National Library of Energy BETA

Sample records for michael scarpino digitally

  1. Michael Hess | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Michael Hess About Us Michael Hess - Former Digital Communications Specialist, Office of Public Affairs Michael Hess Michael joined the Office of New Media at the Energy Department in August 2011 to write and promote stories about science technology, basic and applied science, technology transfer, commercialization, research and development, and the National Labs. In a previous life, Michael was an enlisted Air Force public affairs representative where he worked as the editor of RAF Lakenheath's

  2. Michael Koentop | Department of Energy

    Energy Savers [EERE]

    Michael Hess About Us Michael Hess - Former Digital Communications Specialist, Office of Public Affairs Michael Hess Michael joined the Office of New Media at the Energy Department in August 2011 to write and promote stories about science technology, basic and applied science, technology transfer, commercialization, research and development, and the National Labs. In a previous life, Michael was an enlisted Air Force public affairs representative where he worked as the editor of RAF Lakenheath's

  3. Michael Strayer

    Broader source: Energy.gov [DOE]

    Michael Strayer is the Associate Director of Advanced Scientific Computing in the Office of Science.

  4. Michael Urashka

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael Urashka Michael Urashka murashka_2.jpg Michael Urashka Computer Systems Engineer Infrastructure Services National Energy Research Scientific Computing Center meurashka@lbl.gov Phone: (510) 486-5256 Fax: (510) 486-6459 Lawrence Berkeley National Laboratory 1 Cyclotron Road Mailstop 59R4010A Berkeley, CA 94720 US Biographical Sketch Michael Urashka has been at LBNL since 2003. Computer Systems Engineer. Webops and scalable infrastructure for application deployments. Web operations for the

  5. Michael Sinatra

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Sinatra Engineering Services The Network OSCARS Fasterdata IPv6 Network Network Performance Tools The ESnet Engineering Team Contact Us Technical Assistance: 1 800-33-ESnet (Inside US) 1 800-333-7638 (Inside US) 1 510-486-7600 (Globally) 1 510-486-7607 (Globally) Report Network Problems: trouble@es.net Provide Web Site Feedback: info@es.net Michael Sinatra Michael Sinatra Network Engineer Network Engineering Services Group Sinatra@es.net Michael Sinatra is engaged in assisting Department of

  6. Michael Rencheck

    Broader source: Energy.gov [DOE]

    Michael Rencheck was appointed the president and chief executive officer of AREVA Inc. in March 2012.  In January 2010, Mike was named the Chief Operating Officer of AREVA Inc., as part of...

  7. Michael Colbert

    Broader source: Energy.gov [DOE]

    Michael Colbert is the Deputy Director of the Office of Diversity and Inclusion at the Department of Energy, where he is working to create and sustain an organizational culture that values...

  8. Michael Milner

    Broader source: Energy.gov [DOE]

    Michael S. Milner became the Assistant Inspector General for Investigation in July 2012.  Prior to this he was Director of the Computer Crime Investigative Unit with the U.S. Army Criminal...

  9. Michael Titus

    Broader source: Energy.gov [DOE]

    Michael joined the Office of Technology Transitions in January of 2016, where he currently serves as a research analyst for the office's strategic projects and data analysis teams. Prior to his...

  10. Michael Baskin

    Office of Energy Efficiency and Renewable Energy (EERE)

    Michael Baskin is an Oak Ridge Institute for Science and Education (ORISE) Fellow in the Office of Energy Efficiency and Renewable Energy (EERE). In his role with EERE he focuses on common areas of...

  11. Michael Gardipe | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Michael Gardipe About Us Michael Gardipe - Deputy Designated Federal Officer

  12. Michael Dopheide

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael Dopheide About ESnet Our Mission The Network ESnet History Governance & Policies Career Opportunities ESnet Staff & Org Chart ESnet Leadership Administration Advanced Network Technologies Cybersecurity Infrastructure, Identity & Collaboration Network Engineering Network Planning Operational Enhancements Office of the CTO Science Engagement Tools Team Contact Us Contact Us Technical Assistance: 1 800-33-ESnet (Inside US) 1 800-333-7638 (Inside US) 1 510-486-7600 (Globally) 1

  13. Michael Ravnitzky

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    24, 2009 Michael Ravnitzky 1905 August Drive Silver Spring, MD 20902 Re: FOIA-2009-000360 Dear Mr. Ravnitzky: This is in final response to the request for information that you sent to the Department of Energy (DOE) under the Freedom of Information Act (FOIA), 5 U.S.C. § 552. You asked for copies of each Weekly Departmental Report for the Department of Energy produced between January 1, 2009 and May 1, 2009. Your request was assigned to the Office of the Executive Secretariat for responsive

  14. Michael Demkowicz: MIT

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael Demkowicz: MIT Alumni Link: Opportunities, News and Resources for Former Employees Latest Issue:September 2015 all issues All Issues » submit Michael Demkowicz: MIT Former postdoc now an Associate Professor at MIT September 3, 2014 Michael Demkowicz Michael Demkowicz Contact Linda Anderman Email Michael Demkowicz Demkowicz now at MIT Michael Demkowicz worked at the Lab from 2005 to 2008 with the Materials Science and Technology division, first as a postdoc and then as a technical staff

  15. Michael Griffin | Bioenergy | NREL

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Griffin Michael Griffin Research Engineer Michael.Griffin@nrel.gov | 303-384-6205 Research Interests Development of catalytic materials for the conversion of biomass into fuels and ...

  16. Employee Spotlight: Michael Torrez

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael Torrez Michael Torrez-Tracing family lineages to colonial New Mexico Michael Torrez, by day a research technologist in the Laboratory's Materials Physics and Applications Division, spends much of his free time researching New Mexico's family histories. August 26, 2014 Michael Torrez Michael Torrez in front of a family tree he is researching. "Tracing one's family history is quite tricky. ...But nowadays we have much greater access to genealogical information than ever before, and

  17. Michael Ratzloff | Bioenergy | NREL

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael Ratzloff Scientist II Mike.Ratzloff@nrel.gov | 303-384-7861 Research Interests Michael Ratzloff received his B.S. in Chemistry from the Colorado School of Mines in 2008, ...

  18. Michael McDowell

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Publicatons Contact Us Ring Status Current Schedule Michael W. McDowell Argonne National Laboratory 9700 S. Cass Ave 431E006 Argonne, IL 60439 Phone: 252-6422 Fax: 252-7392...

  19. Michael H. Schlender- Biography

    Broader source: Energy.gov [DOE]

    Michael Schlender is Chief Operations Officer and Associate Laboratory Director for Operational Systems at Pacific Northwest National Laboratory, a VPP Star Site operated by Battelle for the U.S. Department of Energy.

  20. Michael L. Rodrigue

    Broader source: Energy.gov [DOE]

    Michael L. Rodrigue coordinates and executes the administrative operations that support the mission of the U.S. Department of Energy Office of Indian Energy, including acquisitions, human...

  1. Welcome Michael Pesin

    Broader source: Energy.gov [DOE]

    Michael Pesin has joined the Office of Electricity Delivery and Energy Reliability as Deputy Assistant Secretary for the Power Systems Engineering Research and Development Division. Michael has 30 years of experience in the electric utility industry, much of it directing development and execution of advanced technology programs. His most recent assignment was with Seattle City Light (SCL) where he developed the technology strategy, managed research and development projects and directed strategic programs to management demonstration projects.

  2. Michael J. Banda

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael J. Banda Print Deputy Division Director, Operations, Advanced Light Source, Ernest Orlando Lawrence Berkeley National Laboratory. Advanced Light Source Lawrence Berkeley National Laboratory 1 Cyclotron Road, MS 80R0114 Berkeley, CA 94720 USA Tel. (510) 495-2837 Fax (510) 486-4960 Email: This e-mail address is being protected from spambots. You need JavaScript enabled to view it Michael Banda is the Deputy Division Director for Operations of the Advanced Light Source. "Banda,"

  3. Employee Spotlight: Michael Torrez

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael Torrez August 26, 2014 Michael (Miguél) Torrez, by day a research technologist in the Laboratory's Materials Physics and Applications Division, spends much of his free time researching New Mexico's family histories and helping interested parties verify or fill in their family tree by complementing any existing document trail with the genetic testing that has become available in recent years. Torrez conducts research at the New Mexico State Library (photo courtesy of the Albuquerque

  4. Michael O'Connor

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    O'Connor Engineering Services The Network OSCARS Fasterdata IPv6 Network Network Performance Tools The ESnet Engineering Team Contact Us Technical Assistance: 1 800-33-ESnet (Inside US) 1 800-333-7638 (Inside US) 1 510-486-7600 (Globally) 1 510-486-7607 (Globally) Report Network Problems: trouble@es.net Provide Web Site Feedback: info@es.net Michael O'Connor Michael (Moc) P. O'Connor Network Engineer Network Engineering Services Group MOC@es.net Mike O'Connor goes by his UNIX ID "moc"

  5. ORISE Research Team Experiences: Michael Smith

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael Smith Astrophysicist Uses Celestial Knowledge to Cultivate Rising Stars Michael Smith ORNL Nuclear Astrophysicist Michael Smith inspects the framework of what will ...

  6. Michael T. Guarnieri | Bioenergy | NREL

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael.Guarnieri@nrel.gov | 303-384-7921 Research Interests Dr. Michael Guarnieri is a research scientist in the National Bioenergy Center's Applied Biology group at the National ...

  7. Michael Budney | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Michael Budney About Us Michael Budney - Director of Business Operations Photo of Michael Budney. Michael Budney is the Director of Business Operations for the Office of Energy Efficiency and Renewable Energy (EERE). He manages the daily operations of EERE's Project Management Coordination Office, Workforce Management Office and Information Technology Services Office to ensure their efforts are aligned, effective, and responsive to the organization's needs. Before joining EERE in May 2015,

  8. NREL: Energy Analysis - Michael Woodhouse

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Woodhouse Photo of Michael Woodhouse Michael Woodhouse is a member of the Technology Systems and Sustainability Analysis Group in the Strategic Energy Analysis Center. Solar PV Technologies and Economics Analyst On staff since 2008 Phone number: 303-384-7623 E-mail: Michael.Woodhouse@nrel.gov Areas of expertise Fundamental science of photovoltaics (PV) and solar hydrogen technologies Economics of PV - From manufacturing to levelized cost of energy (LCOE) Primary research interests Manufacturing

  9. Michael Reed | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Michael Reed About Us Michael Reed - Director, Technical and Project Management Division Mike_Reed.jpg Mr. Michael Reed is the Director of the Technical and Project Management Division (TPMD) for the Department of Energy's Loan Programs Office (LPO). In this role, he provides technical management and performance monitoring of LPO's $30 billion portfolio of clean energy projects. This portfolio includes projects in renewable energy and energy efficiency, advanced technology vehicle manufacturing,

  10. Michael S. Talmadge | Bioenergy | NREL

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    S. Talmadge Michael S. Talmadge Senior Process Engineer, Biorefinery Analysis Michael.Talmadge@nrel.gov | 303-275-4632 Areas of Expertise Michael S. Talmadge has 15 years of experience in fuel production technologies with the first 10 years of his career spent in petroleum production and refining process development with ExxonMobil Research and Engineering Company and Valero Energy Corporation. Since joining the National Renewable Energy Laboratory (NREL), Talmadge has supported the development

  11. Michael Levitt and Computational Biology

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael Levitt and Computational Biology Resources with Additional Information * Publications Michael Levitt Courtesy of Linda A. Cicero / Stanford News Service Michael Levitt, PhD, professor of structural biology at the Stanford University School of Medicine, has won the 2013 Nobel Prize in Chemistry. ... Levitt ... shares the ... prize with Martin Karplus ... and Arieh Warshel ... "for the development of multiscale models for complex chemical systems." Levitt's work focuses on

  12. NREL: Energy Analysis - Michael Gleason

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael Gleason is a member of the Data Analysis and Visualization Group in the Strategic Energy Analysis Center. Scientist III - GIS On staff since April 2014 Phone number: ...

  13. ORISE: Undergraduate Research Experiences - Michael Capozzoli

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Website development effort leads to career opportunity for NETL intern Michael Capozzoli Michael Capozzoli configures the content management system that will power the new website ...

  14. National Laboratory]; Chertkov, Michael [Los Alamos National...

    Office of Scientific and Technical Information (OSTI)

    Chertkov, Michael Los Alamos National Laboratory Construction and Facility Engineering; Energy Conservation, Consumption, & Utilization(32); Energy Planning, Policy, &...

  15. ORISE: Undergraduate Research Experiences - Michael Capozzoli

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael Capozzoli Website development effort leads to career opportunity for NETL intern Michael Capozzoli Michael Capozzoli configures the content management system that will power the new website at National Energy Technology Laboratory in Pittsburgh, Pa. Photo by Brian Albin/NETL Michael Capozzoli just needed an internship for graduation. What he got was even better. Capozzoli's assignment, offered through a National Energy Technology Laboratory professional internship program and

  16. Michael DeSantis | Photosynthetic Antenna Research Center

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael DeSantis Michael DeSantis Michael DeSantis Michael DeSantis Alumnus Website: Washington University in St. Louis Graduated with PhD in 2012. Dr. DeSantis is a former...

  17. Michael Sternberg | Argonne National Laboratory

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael Sternberg Senior Scientific Associate Ph.D., University of Paderborn, Germany Research focus is in the integration of various modeling programs, to enable researchers to combine the strengths of each approach to allow solving more complex problems Responsibility for the high-performance computing systems at the center Telephone 630.252.4631 Fax 630.252.4646 E-mail sternberg@anl.gov CV/Resume PDF icon sternberg

  18. John Michael Yarbrough | Bioenergy | NREL

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael Yarbrough Research Scientist John.Yarbrough@nrel.gov | 303-384-6831 Research Interests John Yarbrough received his Ph.D. in Applied Physics from the Colorado School of Mines (CSM) in 2007 where his research activities primarily involved investigating the electronic and optical properties of advanced polycrystalline semiconductor materials systems and device structures. He spent most of his time at CSM developing and using novel characterization techniques to obtain a fundamental

  19. Michael Stewart! NERSC User Services

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael Stewart! NERSC User Services Compilers on NERSC Systems --- 1 --- September 10, 2013 Compilers on NERSC Systems Crays ( Hopper a nd E dison) PrgEnv m odules p rovide l inks t o M PI a nd m ath l ibrary l ibraries a nd includes. Invoke c ompilers w ith w rapper c ommands a nd t he l oaded PrgEnv m odule will i nvoke t he p roper c ompiler: ?n ( Fortran), c c ( C c ompiler), a nd C C ( C+ +). Available c ompiler m odules: pgi ( only o n H opper), i ntel, c ray, a nd g nu (gcc). Default

  20. Michael G. Zimmerman | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    G. Zimmerman About Us Michael G. Zimmerman - Director, Office of Headquarters Security Operations Michael G. Zimmerman Mr. Michael Zimmerman is the Director of the Office of Headquarters Security Operations. The office supports DOE Headquarters through a comprehensive safeguards and security program providing protection for personnel, information and facilities at DOE Headquarters buildings. The protection programs within the Office of Headquarters Security Operations include the Protective

  1. Michael J. Ardaiz | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    J. Ardaiz About Us Michael J. Ardaiz - Chief Medical Officer, Office of the Associate Under Secretary for Environment, Health, Safety and Security Michael J. Ardaiz Dr. Michael Ardaiz is the DOE Chief Medical Officer within the office of the Associate Under Secretary for Environment, Health, Safety, and Security. Currently, Dr. Ardaiz serves as the chief Occupational Medicine physician for the Department in support of over 50 occupational health facilities which in turn provide health care to

  2. Michael Pesin, OE-10 | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Michael Pesin, OE-10 About Us Michael Pesin, OE-10 - Deputy Assistant Secretary, Advanced Grid Research and Development Michael Pesin is Deputy Assistant Secretary for the Advanced Grid Research and Development Division in the U.S. Department of Energy's Office of Electricity Delivery and Energy Reliability. Mr. Pesin has 30 years of experience in the electric utility industry, much of it directing development and execution of advanced technology programs. His most recent assignment was with

  3. Michael Seibert - Research Fellow Emeritus | NREL

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael Seibert - Research Fellow Emeritus Photo of Michael Seibert Research Fellows Dr. Michael Seibert is a Research Fellow Emeritus of the National Renewable Energy Laboratory (NREL) and Research Professor in the Environmental Science and Engineering Department at the Colorado School of Mines, Golden. His current research interests include primary processes of and water-oxidation in oxygenic photosynthesis, structure and function of [Fe]-hydrogenases, molecular engineering of hydrogenases,

  4. Memorial Gathering Pending for NERSC's Michael Welcome

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Memorial Gathering Pending for NERSC's Michael Welcome Memorial Gathering Pending for NERSC's Michael Welcome February 4, 2014 MWelcome.JPG Mike Welcome A celebration of life is pending for Michael Welcome, a member of NERSC's Mass Storage Group, who collapsed at work on Thursday, Jan. 30, and subsequently died. Welcome spent his entire career working for computing organizations at Lawrence Berkeley and Lawrence Livermore national laboratories. He was 56. During his 30-year career, Welcome made

  5. Michael Gross | Photosynthetic Antenna Research Center

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael Gross Michael Gross Michael Gross Principal Investigator E-mail: mgross@wustl.edu Phone: (314) 935-4814 Website: Washington University in St. Louis Principal Investigator Dr. Gross's research interests include analytical chemistry, biological chemistry, biophysical chemistry, FT-ICR instrument development, MALDI matrix development, mass spectrometry for protein biochemistry and biophysics, modified DNA and cancer, physical organic chemistry, protein and peptide analysis, and proteomics.

  6. Michael Andersen, LLC | Open Energy Information

    Open Energy Info (EERE)

    Zip: 80202 Region: Rockies Area Sector: Services Product: Renewable Energy Artwork Photography Website: www.MichaelAndersenLLC.com Coordinates: 39.7541032, -105.0002242 Show...

  7. Michael R. Maraya (Acting) | Department of Energy

    Office of Environmental Management (EM)

    R. Maraya (Acting) About Us Michael R. Maraya (Acting) - Deputy CIO for Enterprise Policy, Portfolio Management & Governance Mike Maraya is the Acting Deputy CIO for Enterprise...

  8. Method for promoting Michael addition reactions

    DOE Patents [OSTI]

    Shah, Pankaj V.; Vietti, David E.; Whitman, David William

    2010-09-21

    Homogeneously dispersed solid reaction promoters having an average particle size from 0.01 .mu.m to 500 .mu.m are disclosed for preparing curable mixtures of at least one Michael donor and at least one Michael acceptor. The resulting curable mixtures are useful as coatings, adhesives, sealants and elastomers.

  9. Michael Liebreich (Energy All Stars Presentation)

    Broader source: Energy.gov [DOE]

    Michael Liebreich, CEO of Bloomberg New Energy Finance, delivered this presentation on the energy economy at the Energy All Stars event on January 19, 2013, at the US Department of Energy in...

  10. Michael Thackeray on Lithium-air Batteries

    ScienceCinema (OSTI)

    Thackeray, Michael

    2013-04-19

    Michael Thackeray, Distinguished Fellow at Argonne National Laboratory, speaks on the new technology Lithium-air batteries, which could potentially increase energy density by 5-10 times over lithium-ion batteries.

  11. Michael Thackery on Lithium-air Batteries

    ScienceCinema (OSTI)

    Michael Thackery

    2010-01-08

    Michael Thackery, Distinguished Fellow at Argonne National Laboratory, speaks on the new technology Lithium-air batteries, which could potentially increase energy density by 5-10 times over lithium-ion batteries.

  12. Michael C Zarnstorff | Princeton Plasma Physics Lab

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael C Zarnstorff Deputy Director for Research Michael Zarnstorff is the deputy director for research at PPPL, where he oversees research that ranges from test- ing ideas for harnessing fusion to developing rockets for space flight. His job encompasses keeping projects aligned with DOE goals and envision- ing new research opportunities for PPPL. An award-winning physicist and a co-discoverer of the bootstrap current, he joined PPPL in 1984 and has been deputy director for research since 2009.

  13. Michael Papka | Argonne Leadership Computing Facility

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Papka Division Director Michael Papka Argonne National Laboratory 9700 South Cass Avenue Building 240 - Rm. 4134 Argonne, IL 60439 630-252-1556 papka@anl.gov http://papka.alcf.anl.gov Michael E. Papka is the Director of the ALCF. He is also Argonne's Deputy Associate Laboratory Director for Computing, Environment and Life Sciences. Both his laboratory leadership roles and his research interests relate to high-performance computing in support of scientific discovery. Dr. Papka holds a Senior

  14. Michael Vaughn | Center for Bio-Inspired Solar Fuel Production

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael Vaughn Graduate student Subtask 1 and 2 project: "Modification of the Turnover Potential of Plastoquinol Terminal Oxidase: Can an Oxygen Reducing Enzyme Operate in Reverse?" Watch Michael's interview at 2012 Bisfuel Retreat

  15. Michael Stone | U.S. DOE Office of Science (SC)

    Office of Science (SC) Website

    Michael Stone Albert Einstein Distinguished Educator Fellowship (AEF) Program Einstein Fellowship Home Eligibility Benefits Obligations How to Apply Key Dates Frequently Asked Questions Fellows Central Current Fellows Alumni Fellows Official AEF Logos Contact WDTS Home Current Fellows Michael Stone Print Text Size: A A A FeedbackShare Page Michael Stone Fellowship Placement: National Science Foundation Hometown: East Ridge, TN Michael Stone has taught at several high schools in Chattanooga,

  16. INVERSIONS H. Michael Mogil, Certified Consulting Meteorologist

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    SEPTEMBER 2008 INVERSIONS H. Michael Mogil, Certified Consulting Meteorologist In the August 2008 issue of Climate Education Update, we looked at the concept of inversions, situations in which the temperature increases with increasing altitude. This is the opposite of what one would expect in the troposphere, the lowest shell of the atmosphere that is in contact with the Earth. Inversions are always present when fog is present. The most commonly observed inversion is the one found near the

  17. Jefferson Lab Leadership Council - Michael Dallas

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Chief Operating Officer, Michael Dallas Dr. Rolf Ent Associate Director for Experimental Nuclear Physics Rolf Ent came to Jefferson Lab in 1993 as a Hall C scientist and adjunct professor at Hampton University. Rolf served as experimental group leader of the Nuclear and High-Energy Physics (NuHEP) Center at Hampton University from 1996-2001, and served as Hall C Leader from 2002-2006. He then served as the 12 GeV Upgrade Science lead at Jefferson Lab until 2009, and became associate director for

  18. 10 Questions for a Mechanical Engineer: Michael Brambley | Department of

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Energy Mechanical Engineer: Michael Brambley 10 Questions for a Mechanical Engineer: Michael Brambley July 17, 2013 - 1:51pm Addthis Pictured here is Michael Brambley in front of equipment that supplies chilled water to PNNL Building Diagnostics Laboratory's air handler. The cooled air from an air handler is distributed to terminal boxes, which are the last point for controlling air temperature and flow before distributing it throughout a building zone. In a new control strategy for

  19. Notices FOR FURTHER INFORMATION CONTACT: Michael Li, Policy Advisor...

    Office of Environmental Management (EM)

    12, 2016 Notices FOR FURTHER INFORMATION CONTACT: Michael Li, Policy Advisor, Office of Energy Efficiency and Renewable Energy, U.S. Department of Energy, 1000 Independence Ave. ...

  20. "ONE HUNDRED YEARS OF SUPERCONDUCTIVITY", Dr. Michael Norman...

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    "ONE HUNDRED YEARS OF SUPERCONDUCTIVITY", Dr. Michael Norman, Materials Science Division, Argonne National Laboratory ONE HUNDRED YEARS OF SUPERCONDUCTIVITY PPPL Entrance ...

  1. Summer 2011 Intern Project- Michael Myers | Center for Energy...

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    PHOSPHOR IMPLEMENTATION SCHEMES FOR EFFICIENT LED-BASED WHITE LIGHT Michael Myers Chemical ... Modern day lighting solutions include highly inefficient sources such as incandescent and ...

  2. Michael Tsapatsis | Center for Gas SeparationsRelevant to Clean...

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael Tsapatsis Professor of Chemical Engineering and Materials Science, University of Minnesota, Minneapolis Email: tsapa001 at umn.edu Phone: 612-626-0920 EFRC research: ...

  3. Michael Allen; Dongarra, Jack. [University of Tennessee, Knoxville...

    Office of Scientific and Technical Information (OSTI)

    Toward a new metric for ranking high performance computing systems. Heroux, Michael Allen; Dongarra, Jack. University of Tennessee, Knoxville, TN The High Performance Linpack...

  4. Digital Television and Media Innovations | Princeton Plasma Physics...

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    28, 2007, 4:15pm to 5:15pm Colloquia MBG Auditorium Digital Television and Media Innovations Dr. Michael A. Isnardi Sarnoff Corporation Colloquium Committee: The Princeton Plasma...

  5. Michael Kenney | Center for Bio-Inspired Solar Fuel Production

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Principal Investigators Postdoctoral Fellows Center researchers Graduate Students Undergraduate Students All Bisfuel Center Personnel Emily North Michael Kenney Michael Kenney Undergraduate student Related links: 2011 Undergraduate's Goldwater award 2012 Dean's Medal Subtask 1 * Subtask 2 * Subtask 3 * Subtask 4 * Subtask 5

  6. Microsoft PowerPoint - 15.1500_Michael Deane [Compatibility Mode...

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    00Michael Deane Compatibility Mode Microsoft PowerPoint - 15.1500Michael Deane Compatibility Mode PDF icon Microsoft PowerPoint - 15.1500Michael Deane Compatibility Mode...

  7. Central Park in New York City Myer, Michael; Goettel, Russell...

    Office of Scientific and Technical Information (OSTI)

    (LED) Post-Top Lighting at Central Park in New York City Myer, Michael; Goettel, Russell T.; Kinzey, Bruce R. GATEWAY; Central Park; lighting; LED; light-emitting diode; post-top...

  8. TBU-0118- IN THE MATTER OF GORDON MICHAELS

    Broader source: Energy.gov [DOE]

    Gordon Michaels appeals the dismissal of his whistleblower complaint filed under I 0 C.F .R. Patt 708, the Depattment of Energy (DOE) Contractor Employee Protection Program. Two offices having...

  9. FIA-15-0053- In the Matter of Michael Isikoff

    Office of Energy Efficiency and Renewable Energy (EERE)

    On October 1, 2015, OHA denied a FOIA Appeal filed by Michael Isikoff (Appellant) from an interim response issued to him by the DOE’s Office of Information Resources. In the Appeal, the Appellant...

  10. ANSER Director Michael R. Wasielewski elected to AAAS | ANSER Center |

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Argonne-Northwestern National Laboratory Director Michael R. Wasielewski elected to AAAS Home > News & Events > ANSER Director Michael R. Wasielewski elected to AAAS Originally published on Northwestern News Six Northwestern Faculty Elected to the American Academy of Arts and Sciences April 20, 2016 | by Megan Fellman EVANSTON, Ill. --- Six members of the Northwestern University faculty have been elected members of the American Academy of Arts and Sciences, one of the nation's

  11. Michael Hickman receives NNSA Gold Medal, announces retirement | National

    National Nuclear Security Administration (NNSA)

    Nuclear Security Administration | (NNSA) Michael Hickman receives NNSA Gold Medal, announces retirement Thursday, May 28, 2015 - 9:21am NNSA's Director of the Office of Enterprise Project Management Michael Hickman has announced that he will be retiring effective May 29, 2015 after 34 years distinguished federal service. As a member of the Senior Executive Service, he has spent approximately 25 of those years in senior leadership positions across DOE and NNSA. In his current capacity,

  12. Michael Lempke receives NNSA's Gold Medal of Excellence | National Nuclear

    National Nuclear Security Administration (NNSA)

    Security Administration | (NNSA) Michael Lempke receives NNSA's Gold Medal of Excellence Monday, June 16, 2014 - 4:25pm DOE Undersecretary for Nuclear Security and NNSA Administrator Frank Klotz recently presented the Gold Medal of Excellence for Distinguished Service to Michael Lempke, former Acting Chief and Associate Administrator for Defense Nuclear Security. The medal is the highest honorary award granted by NNSA and was presented to Lempke in recognition of his outstanding

  13. Secretary of Energy Advisory Board Public Meeting Committee Members: John Deutch, Chair; Carol Browner; Michael Greenstone; Michael McQuade;

    Office of Environmental Management (EM)

    Carol Browner; Michael Greenstone; Michael McQuade; Richard A. Meserve; Ram Shenoy; Dan Reicher; Martha Schlicher; and Linda Stuntz Date and Time: October 15, 2015, 9:00 AM - 12:15 PM EST Location: Department of Energy, Forrestal Building, 1000 Independence Avenue, SW, Washington, DC Purpose: Meeting of the Secretary of Energy Advisory Board (SEAB) SEAB Staff: Karen Gibson, Designated Federal Officer; Corey Williams-Allen, Deputy Designated Federal Officer; Matthew Schaub, Deputy Director DOE

  14. Science in St. Louis | Dr. Michael Fix | Photosynthetic Antenna Research

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Center Science in St. Louis | Dr. Michael Fix March 15, 2016 Science in St. Louis | Dr. Michael Fix Monster in the Hollow - The Story of Missouri's Ozark Dinosaurs Professor Fix has been a member of UMSL's Physics faculty since 1976 and is responsible for teaching all of the Geology classes and labs that are offered through the department. He is a graduate of Washington University's department of Earth and Planetary Sciences with a focus in paleontology and stratigraphy. He was chosen by the

  15. From: Henderson, Michael To: Congestion Study Comments; Meyer, David

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Henderson, Michael To: Congestion Study Comments; Meyer, David Cc: Doe, Stanley; Kowalski, Richard; Paradise, Theodore Subject: DOE Congestion Study Date: Monday, October 20, 2014 10:12:20 AM Attachments: image001.png ISO New England is pleased to provide comments on the public draft of the DOE Congestion Study. The ISO appreciates DOE's consideration of several specific comments shown in red below. Comments: Figure ES-2: It is possible to identify the consistent impacts of a few specific

  16. The Puzzling Boundaries of Topological Quantum Matter Michael Levin

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Puzzling Boundaries of Topological Quantum Matter Michael Levin University of Chicago October 14, 2015 4:00 p.m. Insulators, by definition, cannot conduct electric current in their interior. However, some insulators - most famously, the recently discovered "topological insulators" - possess the unusual property that they conduct at their surfaces or edges. This conduction occurs through modes that travel along the boundary of the insulator, like waves moving on the surface of the

  17. IN A FOG H. Michael Mogil, Certified Consulting Meteorologist

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    AUGUST 2008 IN A FOG H. Michael Mogil, Certified Consulting Meteorologist In April 2008, scientists from the Atmospheric Radiation Measurement (ARM) Program conducted an experiment using an airplane that flew over Barrow, Alaska, where the North Slope Alaska ARM Climate Research Facility is located. Throughout the experiment, they were based out of Fairbanks, about 500 miles inland from Barrow. Instruments on the aircraft and at Barrow allowed the scientists to obtain various measurements from

  18. FIA-16-0039 - In the Matter of Michael Ravnitzky | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    9 - In the Matter of Michael Ravnitzky FIA-16-0039 - In the Matter of Michael Ravnitzky On July 28, 2016, OHA granted in part a FOIA Appeal filed by Michael Ravinitzky from a determination issued by the Office of Scientific and Technical Information (OSTI) of the Department of Energy. In the Appeal, the Appellant challenged OSTI's decision to withhold responsive records under Exemptions 3 and 4 of the FOIA. Reviewing only the unclassified portion of the responsive records, OHA found that OSTI's

  19. Michael M. May, 1970 | U.S. DOE Office of Science (SC)

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael M. Johnson About Us Michael M. Johnson - Chief Information Officer Mr. Michael Johnson is the Chief Information Officer (CIO) for the U.S. Department of Energy (DOE), where he leads and manages cybersecurity, cyber (information sharing and safeguarding) enterprise integration, enterprise information resources management, cyber supply chain risk management, and DOE-HQ information technology (IT) operations. This includes DOE leadership, management, and oversight serving as DOE's Senior

  20. Dr Michael Pechan | U.S. DOE Office of Science (SC)

    Office of Science (SC) Website

    Dr Michael Pechan Materials Sciences and Engineering (MSE) Division MSE Home About Staff What's New Research Areas Reports and Activities Science Highlights Principal ...

  1. 10 CFR 850, Request for Information- Docket Number: HS-RM-10-CBDPP- Michael Brisson

    Office of Energy Efficiency and Renewable Energy (EERE)

    Commenter: Michael Brisson 10 CFR 850 - Request for Information Docket Number: HS-RM-10-CBDPP Comment Close Date: 2/22/2011

  2. Michael Lowe > Senior Chemist - Dow Chemical Company > Center Alumni > The

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Energy Materials Center at Cornell Michael Lowe Senior Chemist - Dow Chemical Company As part of the Abruña Group, Michael received his PhD in 2012. He has since joined Dow Chemical at their Michigan area facility where he is a Analytical Chemist for Core R&D

  3. FIA-13-0008- In the Matter of Michael J. Kelly

    Broader source: Energy.gov [DOE]

    On March 13, 2013, the Department of Energy’s (DOE) Office of Hearings and Appeals (OHA) denied a Freedom of Information Act (FOIA) Appeal filed by Michael J. Kelly (Appellant) of a determination...

  4. Dr Michael Markowitz | U.S. DOE Office of Science (SC)

    Office of Science (SC) Website

    Dr. Michael Markowitz Materials Sciences and Engineering (MSE) Division MSE Home About Staff What's New Research Areas Reports and Activities Science Highlights Principal Investigators' Meetings BES Home Staff Dr. Michael Markowitz Print Text Size: A A A FeedbackShare Page Markowitz Program Manager Biomolecular Materials Materials Sciences and Engineering Division Office of Basic Energy Sciences SC-22.2/Germantown Building, Rm F-411 U.S. Department of Energy 1000 Independence Avenue, SW

  5. Dr. Michael Sennett | U.S. DOE Office of Science (SC)

    Office of Science (SC) Website

    Michael Sennett Materials Sciences and Engineering (MSE) Division MSE Home About Staff What's New Research Areas Reports and Activities Science Highlights Principal Investigators' Meetings BES Home Staff Dr. Michael Sennett Print Text Size: A A A FeedbackShare Page Program Manager Materials Chemistry Materials Sciences and Engineering Division Office of Basic Energy Sciences SC-22.2/Germantown Building, Rm F-421 U.S. Department of Energy 1000 Independence Avenue, SW Washington, D.C. 20585-1290

  6. Notices FOR FURTHER INFORMATION CONTACT: Michael Li, Policy Advisor, Office of

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    1 Federal Register / Vol. 81, No. 29 / Friday, February 12, 2016 / Notices FOR FURTHER INFORMATION CONTACT: Michael Li, Policy Advisor, Office of Energy Efficiency and Renewable Energy, U.S. Department of Energy, 1000 Independence Ave. SW., Washington, DC 20585. Phone number 202-287-5189, and email Michael.li@ ee.doe.gov. SUPPLEMENTARY INFORMATION: Purpose of the Board: To make recommendations to the Assistant Secretary for the Office of Energy Efficiency and Renewable Energy regarding goals and

  7. Speakers: Michael Schaal, EIA Paul Argyropoulos, U.S. Environmental Protection Agency

    U.S. Energy Information Administration (EIA) Indexed Site

    2: "Biofuels: Continuing Shifts in the Industry and Long-Term Outlook" Speakers: Michael Schaal, EIA Paul Argyropoulos, U.S. Environmental Protection Agency R. Brooke Coleman, New Fuels Alliance Peter Gross, EIA Steven Hamburg, Environmental Defense Fund [Note: Recorders did not pick up introduction of panel (see biographies for details on the panelists) or introduction of session.] Michael: To the EIA-SAIS 2010 Energy Conference. This is session 2, "Biofuels: Continuing Shifts in

  8. L3:VUQ.SAUQ.P3.02 Michael Eldred SNL

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    2 Michael Eldred SNL Completed: 9/30/11 CASL-U-2011-0194-000 SANDIA REPORT SAND2011-xxxx Unlimited Release Printed September 2011 Investigation of Advanced UQ for CRUD Prediction with VIPRE Michael S. Eldred Prepared by Sandia National Laboratories Albuquerque, New Mexico 87185 and Livermore, California 94550 Sandia National Laboratories is a multi-program laboratory managed and operated by Sandia Corporation, a wholly owned subsidiary of Lockheed Martin Corporation, for the U.S. Department of

  9. ESnet's Michael Bennett Recognized by IEEE for Work in Energy Efficiency

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael Bennett Recognized by IEEE for Work in Energy Efficiency News & Publications ESnet News Media & Press Publications and Presentations Galleries ESnet Awards and Honors Contact Us Media Jon Bashor, jbashor@lbl.gov, +1 510 486 5849 or Media@es.net Technical Assistance: 1 800-33-ESnet (Inside the US) 1 800-333-7638 (Inside the US) 1 510-486-7600 (Globally) 1 510-486-7607 (Globally) Report Network Problems: trouble@es.net Provide Web Site Feedback: info@es.net ESnet's Michael Bennett

  10. Michael E. Phelps, 1983 | U.S. DOE Office of Science (SC)

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael E. Phelps, 1983 The Ernest Orlando Lawrence Award Lawrence Award Home Nomination & Selection Guidelines Award Laureates 2010's 2000's 1990's 1980's 1970's 1960's Ceremony The Life of Ernest Orlando Lawrence Contact Information The Ernest Orlando Lawrence Award U.S. Department of Energy SC-2/Germantown Building 1000 Independence Ave., SW Washington, DC 20585 P: (301) 903-2411 E: Email Us 1980's Michael E. Phelps, 1983 Print Text Size: A A A FeedbackShare Page Life Sciences; For

  11. Michael E. Phelps, 1998 | U.S. DOE Office of Science (SC)

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Michael E. Phelps, 1998 The Enrico Fermi Award Fermi Award Home Nomination & Selection Guidelines Award Laureates 2010's 2000's 1990's 1980's 1970's 1960's 1950's Ceremony The Life of Enrico Fermi Contact Information The Enrico Fermi Award U.S. Department of Energy SC-2/Germantown Building 1000 Independence Ave., SW Washington, DC 20585 P: (301) 903-2411 E: Email Us 1990's Michael E. Phelps, 1998 Print Text Size: A A A FeedbackShare Page Citation For his invention of Positron Emission

  12. Via E-Mail Michael Li Electricity Policy Specialist U.S. Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    November 1, 2010 Via E-Mail Michael Li Electricity Policy Specialist U.S. Department of Energy Office of Electricity Delivery and Energy Reliability 1000 Independence Avenue, SW Washington, DC 20585 smartgridpolicy@hq.doe.gov Re: Smart Grid RFI: Addressing Policy And Logistical Challenges Dear Mr. Li: On behalf of the Association of Home Appliance Manufacturers (AHAM), I would like to provide our comments on the Smart Grid RFI: Addressing Policy and Logistical Challenges, 75 Fed. Reg. 57,006

  13. Letter to Science from Michael Wang, Center for Transportation Research, Argonne National Laboratory

    Alternative Fuels and Advanced Vehicles Data Center [Office of Energy Efficiency and Renewable Energy (EERE)]

    Letter to Science (Original version submitted to Science on Feb. 14 th , 2008; revised on March 14 th , 2008) Michael Wang Center for Transportation Research Argonne National Laboratory Zia Haq Office of Biomass Program Office of Energy Efficiency and Renewable Energy U.S. Department of Energy The article by Searchinger et al. in Sciencexpress ("Use of U.S. Croplands for Biofuels Increases Greenhouse Gases through Emissions from Land Use Change," February 7, 2008) provides a timely

  14. MEMORANDUM FOR THE SECRETARY THROUGH: THE DEPUTY SECRETARY FROM: MICHAEL W. OWEN

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    11, 2005 MEMORANDUM FOR THE SECRETARY THROUGH: THE DEPUTY SECRETARY FROM: MICHAEL W. OWEN DIRECTOR OF OFFICE LEGACY MANAGEMENT SUBJECT: Decision Memorandum: Authorize Changes to Contractor Work Force Restructuring Policy under Section 3161 of the National Defense Authorization Act for Fiscal Year 1993. Section 3161 of the National Defense Authorization Act for Fiscal Year 1993 (section 3161) was enacted to address certain work force restructuring issues with respect to employees of defense

  15. LOS ALAMOS, New Mexico, January 22, 2008-Laboratory Director Michael Anastasio

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    head of stockpile manufacturing and support January 22, 2008 Organization responsible for production of nuclear weapon components and other national security- related products and services LOS ALAMOS, New Mexico, January 22, 2008-Laboratory Director Michael Anastasio has named Carl Beard as the new associate director for stockpile manufacturing and support. Beard has held this position in an acting capacity since June 2007"The stockpile manufacturing directorate produces for the nation

  16. "Display of Tournament Bracket" Inventors Eliot Feibush, Michael

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Knyszek, Matthew Lotocki, Jared Miller, Andrew Zwicker. | Princeton Plasma Physics Lab Display of Tournament Bracket" Inventors Eliot Feibush, Michael Knyszek, Matthew Lotocki, Jared Miller, Andrew Zwicker. The system creates a diagram of the rounds of a tournament. It is formatted to fit legibly on a one high-definition screen without having to scroll the data. It shows the progression of competitors in a single or double elimination tournament. The score of each match is transmitted

  17. Hr. Michael Esposito Audio-Tex Industries, Incorporated 4555 West Addison Street

    Office of Legacy Management (LM)

    -- Hr. Michael Esposito Audio-Tex Industries, Incorporated 4555 West Addison Street Chicago, Illinois 60641 Dear Mr. Esposito: Enclosed is a copy of the final survey report for your facility in Chicago,. Illinois , which is the site of the former ERA Tool & Engineering Company. The survey report documents the fact that the radiological condition of your facility is in compliance with applicable Department of Energy Guidelines and that no remedial action or further investigaticns are

  18. "ONE HUNDRED YEARS OF SUPERCONDUCTIVITY", Dr. Michael Norman, Materials

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Science Division, Argonne National Laboratory | Princeton Plasma Physics Lab 10, 2012, 9:30am Science On Saturday "ONE HUNDRED YEARS OF SUPERCONDUCTIVITY", Dr. Michael Norman, Materials Science Division, Argonne National Laboratory ONE HUNDRED YEARS OF SUPERCONDUCTIVITY PPPL Entrance Procedures Visitor Information, Directions, Security at PPPL As a federal facility, the Princeton Plasma Physics Laboratory is operating under heightened security measures because of the events of

  19. Surface Modified Particles By Multi-Step Michael-Type Addition And Process For The Preparation Thereof

    DOE Patents [OSTI]

    Cook, Ronald Lee (Lakewood, CO); Elliott, Brian John (Superior, CO); Luebben, Silvia DeVito (Golden, CO); Myers, Andrew William (Arvada, CO); Smith, Bryan Matthew (Boulder, CO)

    2005-05-03

    A new class of surface modified particles and a multi-step Michael-type addition surface modification process for the preparation of the same is provided. The multi-step Michael-type addition surface modification process involves two or more reactions to compatibilize particles with various host systems and/or to provide the particles with particular chemical reactivities. The initial step comprises the attachment of a small organic compound to the surface of the inorganic particle. The subsequent steps attach additional compounds to the previously attached organic compounds through reactive organic linking groups. Specifically, these reactive groups are activated carbon—carbon pi bonds and carbon and non-carbon nucleophiles that react via Michael or Michael-type additions.

  20. Surface Modified Particles By Multi-Step Michael-Type Addition And Process For The Preparation Thereof

    DOE Patents [OSTI]

    Cook, Ronald Lee; Elliott, Brian John; Luebben, Silvia DeVito; Myers, Andrew William; Smith, Bryan Matthew

    2005-05-03

    A new class of surface modified particles and a multi-step Michael-type addition surface modification process for the preparation of the same is provided. The multi-step Michael-type addition surface modification process involves two or more reactions to compatibilize particles with various host systems and/or to provide the particles with particular chemical reactivities. The initial step comprises the attachment of a small organic compound to the surface of the inorganic particle. The subsequent steps attach additional compounds to the previously attached organic compounds through reactive organic linking groups. Specifically, these reactive groups are activated carbon—carbon pi bonds and carbon and non-carbon nucleophiles that react via Michael or Michael-type additions.

  1. Michael Baechler

    Broader source: Energy.gov [DOE]

    Mr. Baechler is a Senior Program Manager in the Electricity Infrastructure and Buildings Division at Pacific Northwest National Laboratory (PNNL). He has been at PNNL since 1984 and currently...

  2. Michael Urashka

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Controls Engineer. He has B.S. degrees from University of Massachusetts - Amherst (Microbiology and in Cellular & Molecular Biology) and an M.S. in Systems Management from Golden...

  3. Michael Sinatra

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Opportunities ESnet Staff & Org Chart Administration Advanced Network Technologies Cybersecurity Infrastructure, Identity & Collaboration Network Engineering Office of the CTO...

  4. Michael Sinatra

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Sinatra About ESnet Our Mission The Network ESnet History Governance & Policies Career Opportunities ESnet Staff & Org Chart ESnet Leadership Administration Advanced Network Technologies Cybersecurity Infrastructure, Identity & Collaboration Network Engineering Dale Carder Paul Wefel Network Planning Operational Enhancements Office of the CTO Science Engagement Tools Team Contact Us Contact Us Technical Assistance: 1 800-33-ESnet (Inside US) 1 800-333-7638 (Inside US) 1 510-486-7600

  5. Michael Li Electricity Policy Specialist U.S. Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    6-390 Village Blvd. Princeton, NJ 08540 609.452.8060 | www.nerc.com November 1, 2010 Michael Li Electricity Policy Specialist U.S. Department of Energy Office of Electricity Delivery and Energy Reliability 1000 Independence Avenue, SW Room 8H033 Washington, DC 20585 RE: "Smart Grid RFI: Addressing Policy and Logistical Challenges" Dear Mr. Li: I am writing in response to the Department of Energy's ("DOE") Request for Information (RFI) regarding the "Smart Grid RFI:

  6. Convection in X-ray Bursts Michael Zingale Stony Brook University

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Convection in X-ray Bursts Michael Zingale Stony Brook University in collaboration with Ann Almgren, John Bell, Andy Nonaka (LBL); Chris Malone (LANL), Stan Woosley (UCSC) Supported by DOE/Office of Nuclear Physics, DE-FG02-06ER41448 and DE-FG02-87ER40317 to Stony Brook, and NSF award AST-1211563. Computer time: National Energy Research Scientific Computing Center (Office of Science, DOE DE-AC02-05CH11231) Convection in Astrophysics â—Ź Evolution of many stellar systems dominated by convective

  7. Digital Sofcell Digital Ultracap joint venture | Open Energy...

    Open Energy Info (EERE)

    Ultracap joint venture Jump to: navigation, search Name: Digital Sofcell - Digital Ultracap joint venture Product: Digital Sofcell will joint venture with Digital Ultracap to...

  8. JGI Digital Scavenger Hunt

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    JGI Digital Scavenger Hunt JGI Digital Scavenger Hunt The NERSC webpages are a great resource for New and Old users, so this is the first stop on the JGI Digital Scavenger Hunt....

  9. Digital Sensor Technology

    SciTech Connect (OSTI)

    Ted Quinn; Jerry Mauck; Richard Bockhorst; Ken Thomas

    2013-07-01

    The nuclear industry has been slow to incorporate digital sensor technology into nuclear plant designs due to concerns with digital qualification issues. However, the benefits of digital sensor technology for nuclear plant instrumentation are substantial in terms of accuracy, reliability, availability, and maintainability. This report demonstrates these benefits in direct comparisons of digital and analog sensor applications. It also addresses the qualification issues that must be addressed in the application of digital sensor technology.

  10. OC_IC_DIGITAL.indd

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    OCIO Leadership OCIO Leadership Michael M. Johnson Chief Information Officer More about Michael M. Johnson Robert G. Green Principal Deputy CIO for Enterprise Information Resources Management More about Robert G. Green Sarah L. Gamage Deputy CIO for Resources Management More about Sarah Gamage Allan Manuel Deputy CIO for Enterprise Policy, Portfolio Management & Governance More about Allan Manuel Renee Forney (Acting) Deputy CIO for Cybersecurity More about Renee Forney (Acting) Paul

  11. Michael A. Mikolanis is a General Engineer with nearly 31 years of engineering a

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    531 2.490 2.473 2.446 2.474 2.547 2003-2016 All Grades - Conventional Areas 2.531 2.490 2.473 2.446 2.474 2.547 2003-2016 Regular 2.361 2.324 2.310 2.277 2.308 2.380 2003-2016 Conventional Areas 2.361 2.324 2.310 2.277 2.308 2.380 2003-2016 Midgrade 2.685 2.631 2.608 2.581 2.597 2.668 2003-2016 Conventional Areas 2.685 2.631 2.608 2.581 2.597 2.668 2003-2016 Premium 2.975 2.927 2.907 2.895 2.923 3.001 2003-2016 Conventional Areas 2.975 2.927 2.907 2.895 2.923 3.001 2003

    Michael A. Mikolanis

  12. Digital Ultracap Corp formerly Digital Ultracap LLC | Open Energy...

    Open Energy Info (EERE)

    Ultracap Corp formerly Digital Ultracap LLC Jump to: navigation, search Name: Digital Ultracap Corp (formerly Digital Ultracap LLC) Place: Netherlands Product: Partnership between...

  13. Uranium hydrogeochemical and stream sediment reconnaissance of the St. Michael NTMS Quadrangle, Alaska

    SciTech Connect (OSTI)

    Hardy, L.C.; D'Andrea, R.F. Jr.; Zinkl, R.J.; Shettel, D.L. Jr.; Langfeldt, S.L.

    1982-01-01

    This report presents results of a Hydrogeochemical and Stream Sediment Reconnaissance (HSSR) of the St. Michael NTMS Quadrangle, Alaska. In addition to this abbreviated data release, more complete data are available to the public in machine-readable form. These machine-readable data, as well as quarterly or semiannual program progress reports containing further information on the HSSR program in general, or on the Los Alamos National Laboratory (LANL) portion of the program in particular, are available from DOE's Technical Library at its Grand Junction Area Office. Presented in this data release are location data, field analyses, and laboratory analyses of several different sample media. For the sake of brevity, many field site observations have not been included in this volume; these data are, however, available on the magnetic tape. Appendices A and B describe the sample media and summarize the analytical results for each medium. The data have been subdivided by one of the Los Alamos National Laboratory sorting programs of Zinkl and others (1981a) into groups of steam-sediment and lake-sediment samples. For each group which contains a sufficient number of observations, statistical tables, tables of raw data, and 1:1,000,000 scale maps of pertinent elements have been included in this report. Also included are maps showing results of multivariate statistical analyses. Information on the field and analytical procedures used by the Los Alamos National Laboratory during sample collection and analysis may be found in any HSSR data release prepared by the Laboratory and will not be included in this report.

  14. Digital Sensor Technology

    SciTech Connect (OSTI)

    Thomas, Ken D.; Quinn, Edward L.; Mauck, Jerry L.; Bockhorst, Richard M.

    2015-02-01

    The nuclear industry has been slow to incorporate digital sensor technology into nuclear plant designs due to concerns with digital qualification issues. However, the benefits of digital sensor technology for nuclear plant instrumentation are substantial in terms of accuracy and reliability. This paper, which refers to a final report issued in 2013, demonstrates these benefits in direct comparisons of digital and analog sensor applications. Improved accuracy results from the superior operating characteristics of digital sensors. These include improvements in sensor accuracy and drift and other related parameters which reduce total loop uncertainty and thereby increase safety and operating margins. An example instrument loop uncertainty calculation for a pressure sensor application is presented to illustrate these improvements. This is a side-by-side comparison of the instrument loop uncertainty for both an analog and a digital sensor in the same pressure measurement application. Similarly, improved sensor reliability is illustrated with a sample calculation for determining the probability of failure on demand, an industry standard reliability measure. This looks at equivalent analog and digital temperature sensors to draw the comparison. The results confirm substantial reliability improvement with the digital sensor, due in large part to ability to continuously monitor the health of a digital sensor such that problems can be immediately identified and corrected. This greatly reduces the likelihood of a latent failure condition of the sensor at the time of a design basis event. Notwithstanding the benefits of digital sensors, there are certain qualification issues that are inherent with digital technology and these are described in the report. One major qualification impediment for digital sensor implementation is software common cause failure (SCCF).

  15. Digital rotation measurement unit

    DOE Patents [OSTI]

    Sanderson, S.N.

    1983-09-30

    A digital rotation indicator is disclosed for monitoring the position of a valve member having a movable actuator. The indicator utilizes mercury switches adapted to move in cooperation with the actuator. Each of the switches produces an output as it changes state when the actuator moves. A direction detection circuit is connected to the switches to produce a first digital signal indicative of the direction of rotation of the actuator. A count pulse generating circuit is also connected to the switches to produce a second digital pulse signal having count pulses corresponding to a change of state of any of the mercury switches. A reset pulse generating circuit is provided to generate a reset pulse each time a count pulse is generated. An up/down counter is connected to receive the first digital pulse signal and the second digital pulse signal and to count the pulses of the second digital pulse signal either up or down depending upon the instantaneous digital value of the first digital signal whereby a running count indicative of the movement of the actuator is maintained.

  16. Digital sonar system

    DOE Patents [OSTI]

    Young, Kenneth K.; Wilkes, R. Jeffrey

    1995-01-01

    A transponder of an active digital sonar system identifies a multifrequency underwater activating sonar signal received from a remote sonar transmitter. The transponder includes a transducer that receives acoustic waves, including the activating sonar signal, and generates an analog electrical receipt signal. The analog electrical receipt signal is converted to a digital receipt signal and cross-correlated with a digital transmission signal pattern corresponding to the activating sonar signal. A relative peak in the cross-correlation value is indicative of the activating sonar signal having been received by the transponder. In response to identifying the activating sonar signal, the transponder transmits a responding multifrequency sonar signal.

  17. Digital sonar system

    DOE Patents [OSTI]

    Young, K.K.; Wilkes, R.J.

    1995-11-21

    A transponder of an active digital sonar system identifies a multifrequency underwater activating sonar signal received from a remote sonar transmitter. The transponder includes a transducer that receives acoustic waves, including the activating sonar signal, and generates an analog electrical receipt signal. The analog electrical receipt signal is converted to a digital receipt signal and cross-correlated with a digital transmission signal pattern corresponding to the activating sonar signal. A relative peak in the cross-correlation value is indicative of the activating sonar signal having been received by the transponder. In response to identifying the activating sonar signal, the transponder transmits a responding multifrequency sonar signal. 4 figs.

  18. Fast transient digitizer

    DOE Patents [OSTI]

    Villa, Francesco

    1982-01-01

    Method and apparatus for sequentially scanning a plurality of target elements with an electron scanning beam modulated in accordance with variations in a high-frequency analog signal to provide discrete analog signal samples representative of successive portions of the analog signal; coupling the discrete analog signal samples from each of the target elements to a different one of a plurality of high speed storage devices; converting the discrete analog signal samples to equivalent digital signals; and storing the digital signals in a digital memory unit for subsequent measurement or display.

  19. JGI Digital Scavenger Hunt

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    JGI Digital Scavenger Hunt JGI Digital Scavenger Hunt The NERSC webpages are a great resource for New and Old users, so this is the first stop on the JGI Digital Scavenger Hunt. Here is your first clue: 1) Log on to Genepool (ssh -Y genepool.nersc.gov) 2) Load the JAMO (dev) module (module load jamo/dev) 3) Run the following sequence of commands and answer the questions: genpool10: ~ $ jamo What is the third letter of the sixth jamo command in the help menu? genepool10: ~ $ jamo info What is the

  20. Digital ac monitor

    DOE Patents [OSTI]

    Hart, George W.; Kern, Jr., Edward C.

    1987-06-09

    An apparatus and method is provided for monitoring a plurality of analog ac circuits by sampling the voltage and current waveform in each circuit at predetermined intervals, converting the analog current and voltage samples to digital format, storing the digitized current and voltage samples and using the stored digitized current and voltage samples to calculate a variety of electrical parameters; some of which are derived from the stored samples. The non-derived quantities are repeatedly calculated and stored over many separate cycles then averaged. The derived quantities are then calculated at the end of an averaging period. This produces a more accurate reading, especially when averaging over a period in which the power varies over a wide dynamic range. Frequency is measured by timing three cycles of the voltage waveform using the upward zero crossover point as a starting point for a digital timer.

  1. Digital ac monitor

    DOE Patents [OSTI]

    Hart, G.W.; Kern, E.C. Jr.

    1987-06-09

    An apparatus and method is provided for monitoring a plurality of analog ac circuits by sampling the voltage and current waveform in each circuit at predetermined intervals, converting the analog current and voltage samples to digital format, storing the digitized current and voltage samples and using the stored digitized current and voltage samples to calculate a variety of electrical parameters; some of which are derived from the stored samples. The non-derived quantities are repeatedly calculated and stored over many separate cycles then averaged. The derived quantities are then calculated at the end of an averaging period. This produces a more accurate reading, especially when averaging over a period in which the power varies over a wide dynamic range. Frequency is measured by timing three cycles of the voltage waveform using the upward zero crossover point as a starting point for a digital timer. 24 figs.

  2. Energy Efficient Digital Networks

    Broader source: Energy.gov (indexed) [DOE]

    and rising * About 7% of all U.S. electricity consumption -Much of this digitally networked already Our Future? Media room in high-end home Electronics are Different - Service ...

  3. Sloan digital sky survey

    SciTech Connect (OSTI)

    Kent, S.M.; Stoughton, C.; Newberg, H.; Loveday, J.; Petravick, D.; Gurbani, V.; Berman, E.; Sergey, G.; Lupton, R.

    1994-04-01

    The Sloan Digital Sky Survey will produce a detailed digital photometric map of half the northern sky to about 23 magnitude using a special purpose wide field 2.5 meter telescope. From this map we will select {approximately} 10{sup 6} galaxies and 10{sup 5} quasars, and obtain high resolution spectra using the same telescope. The imaging catalog will contain 10{sup 8} galaxies, a similar number of stars, and 10{sup 6} quasar candidates.

  4. Digital Actuator Technology

    SciTech Connect (OSTI)

    Ken Thomas; Ted Quinn; Jerry Mauck; Richard Bockhorst

    2014-09-01

    There are significant developments underway in new types of actuators for power plant active components. Many of these make use of digital technology to provide a wide array of benefits in performance of the actuators and in reduced burden to maintain them. These new product offerings have gained considerable acceptance in use in process plants. In addition, they have been used in conventional power generation very successfully. This technology has been proven to deliver the benefits promised and substantiate the claims of improved performance. The nuclear industry has been reluctant to incorporate digital actuator technology into nuclear plant designs due to concerns due to a number of concerns. These could be summarized as cost, regulatory uncertainty, and a certain comfort factor with legacy analog technology. The replacement opportunity for these types of components represents a decision point for whether to invest in more modern technology that would provide superior operational and maintenance benefits. Yet, the application of digital technology has been problematic for the nuclear industry, due to qualification and regulatory issues. With some notable exceptions, the result has been a continuing reluctance to undertake the risks and uncertainties of implementing digital actuator technology when replacement opportunities present themselves. Rather, utilities would typically prefer to accept the performance limitations of the legacy analog actuator technologies to avoid impacts to project costs and schedules. The purpose of this report is to demonstrate that the benefits of digital actuator technology can be significant in terms of plant performance and that it is worthwhile to address the barriers currently holding back the widespread development and use of this technology. It addresses two important objectives in pursuit of the beneficial use of digital actuator technology for nuclear power plants: 1. To demonstrate the benefits of digital actuator

  5. Digital field ion microscopy

    SciTech Connect (OSTI)

    Sijbrandij, S.J.; Russell, K.F.; Miller, M.K.; Thomson, R.C.

    1998-01-01

    Due to environmental concerns, there is a trend to avoid the use of chemicals needed to develop negatives and to process photographic paper, and to use digital technologies instead. Digital technology also offers the advantages that it is convenient, as it enables quick access to the end result, allows image storage and processing on computer, allows rapid hard copy output, and simplifies electronic publishing. Recently significant improvements have been made to the performance and cost of camera-sensors and printers. In this paper, field ion images recorded with two digital cameras of different resolution are compared to images recorded on standard 35 mm negative film. It should be noted that field ion images exhibit low light intensity and high contrast. Field ion images were recorded from a standard microchannel plate and a phosphor screen and had acceptance angles of {approximately} 60{degree}. Digital recordings were made with a Digital Vision Technologies (DVT) MICAM VHR1000 camera with a resolution of 752 x 582 pixels, and a Kodak DCS 460 digital camera with a resolution of 3,060 x 2,036 pixels. Film based recordings were made with Kodak T-MAX film rated at 400 ASA. The resolving power of T-MAX film, as specified by Kodak, is between 50 and 125 lines per mm, which corresponds to between 1,778 x 1,181 and 4,445 x 2,953 pixels, i.e. similar to that from the DCS 460 camera. The intensities of the images were sufficient to be recorded with standard fl:1.2 lenses with exposure times of less than 2 s. Many digital cameras were excluded from these experiments due to their lack of sensitivity or the inability to record a full frame image due to the fixed working distance defined by the vacuum system. The digital images were output on a Kodak Digital Science 8650 PS dye sublimation color printer (300 dpi). All field ion micrographs presented were obtained from a Ni-Al-Be specimen.

  6. Digital optical conversion module

    DOE Patents [OSTI]

    Kotter, Dale K.; Rankin, Richard A.

    1991-02-26

    A digital optical conversion module used to convert an analog signal to a computer compatible digital signal including a voltage-to-frequency converter, frequency offset response circuitry, and an electrical-to-optical converter. Also used in conjunction with the digital optical conversion module is an optical link and an interface at the computer for converting the optical signal back to an electrical signal. Suitable for use in hostile environments having high levels of electromagnetic interference, the conversion module retains high resolution of the analog signal while eliminating the potential for errors due to noise and interference. The module can be used to link analog output scientific equipment such as an electrometer used with a mass spectrometer to a computer.

  7. Digital optical conversion module

    DOE Patents [OSTI]

    Kotter, D.K.; Rankin, R.A.

    1988-07-19

    A digital optical conversion module used to convert an analog signal to a computer compatible digital signal including a voltage-to-frequency converter, frequency offset response circuitry, and an electrical-to-optical converter. Also used in conjunction with the digital optical conversion module is an optical link and an interface at the computer for converting the optical signal back to an electrical signal. Suitable for use in hostile environments having high levels of electromagnetic interference, the conversion module retains high resolution of the analog signal while eliminating the potential for errors due to noise and interference. The module can be used to link analog output scientific equipment such as an electrometer used with a mass spectrometer to a computer. 2 figs.

  8. Digital Image Correlation Engine

    SciTech Connect (OSTI)

    Turner, Dan; Crozier, Paul; Reu, Phil

    2015-10-06

    DICe is an open source digital image correlation (DIC) tool intended for use as a module in an external application or as a standalone analysis code. It's primary capability is computing full –field displacements and strains from sequences of digital These images are typically of a material sample undergoing a materials characterization experiment, but DICe is also useful for other applications (for example, trajectory tracking). DICe is machine portable (Windows, Linux and Mac) and can be effectively deployed on a high performance computing platform. Capabilities from DICe can be invoked through a library interface, via source code integration of DICe classes or through a graphical user interface.

  9. EERE Digital Data Management | Department of Energy

    Office of Environmental Management (EM)

    EERE Digital Data Management EERE Digital Data Management The Office of Energy Efficiency and Renewable Energy (EERE) Policy on Digital Data Management is part of the ...

  10. Digitally Marking RSA Moduli

    SciTech Connect (OSTI)

    Johnston, A.M.

    2000-10-09

    The moduli used in RSA (see [5]) can be generated by many different sources. The generator of that modulus (assuming a single entity generates the modulus) knows its factorization. They would have the ability to forge signatures or break any system based on this moduli. If a moduli and the RSA parameters associated with it were generated by a reputable source, the system would have higher value than if the parameters were generated by an unknown entity. So for tracking, security, confidence and financial reasons it would be beneficial to know who the generator of the RSA modulus was. This is where digital marking comes in. An RSA modulus ia digitally marked, or digitally trade marked, if the generator and other identifying features of the modulus (such as its intended user, the version number, etc.) can be identified and possibly verified by the modulus itself. The basic concept of digitally marking an RSA modulus would be to fix the upper bits of the modulus to this tag. Thus anyone who sees the public modulus can tell who generated the modulus and who the generator believes the intended user/owner of the modulus is.

  11. ELECTRONIC DIGITAL COMPUTER

    DOE Patents [OSTI]

    Stone, J.J. Jr.; Bettis, E.S.; Mann, E.R.

    1957-10-01

    The electronic digital computer is designed to solve systems involving a plurality of simultaneous linear equations. The computer can solve a system which converges rather rapidly when using Von Seidel's method of approximation and performs the summations required for solving for the unknown terms by a method of successive approximations.

  12. Metrological digital audio reconstruction

    DOE Patents [OSTI]

    Fadeyev; Vitaliy , Haber; Carl

    2004-02-19

    Audio information stored in the undulations of grooves in a medium such as a phonograph record may be reconstructed, with little or no contact, by measuring the groove shape using precision metrology methods coupled with digital image processing and numerical analysis. The effects of damage, wear, and contamination may be compensated, in many cases, through image processing and analysis methods. The speed and data handling capacity of available computing hardware make this approach practical. Two examples used a general purpose optical metrology system to study a 50 year old 78 r.p.m. phonograph record and a commercial confocal scanning probe to study a 1920's celluloid Edison cylinder. Comparisons are presented with stylus playback of the samples and with a digitally re-mastered version of an original magnetic recording. There is also a more extensive implementation of this approach, with dedicated hardware and software.

  13. Digital scale converter

    DOE Patents [OSTI]

    Upton, Richard G.

    1978-01-01

    A digital scale converter is provided for binary coded decimal (BCD) conversion. The converter may be programmed to convert a BCD value of a first scale to the equivalent value of a second scale according to a known ratio. The value to be converted is loaded into a first BCD counter and counted down to zero while a second BCD counter registers counts from zero or an offset value depending upon the conversion. Programmable rate multipliers are used to generate pulses at selected rates to the counters for the proper conversion ratio. The value present in the second counter at the time the first counter is counted to the zero count is the equivalent value of the second scale. This value may be read out and displayed on a conventional seven-segment digital display.

  14. Digital Image Correlation Engine

    Energy Science and Technology Software Center (OSTI)

    2015-10-06

    DICe is an open source digital image correlation (DIC) tool intended for use as a module in an external application or as a standalone analysis code. It's primary capability is computing full –field displacements and strains from sequences of digital These images are typically of a material sample undergoing a materials characterization experiment, but DICe is also useful for other applications (for example, trajectory tracking). DICe is machine portable (Windows, Linux and Mac) and canmore » be effectively deployed on a high performance computing platform. Capabilities from DICe can be invoked through a library interface, via source code integration of DICe classes or through a graphical user interface.« less

  15. DIGITAL Q METER

    DOE Patents [OSTI]

    Briscoe, W.L.

    1962-02-13

    A digital Q meter is described for measuring the Q of mechanical or electrical devices. The meter comprises in combination a transducer coupled to an input amplifier, and an upper and lower level discriminator coupled to the amplifier and having their outputs coupled to an anticoincidence gate. The output of the gate is connected to a scaler. The lower level discriminator is adjusted to a threshold level of 36.8 percent of the operating threshold level of the upper level discriminator. (AEC)

  16. Software Michael Heroux

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    about producing high-quality, reproducible and verifiable results, it will want to invest in a high-quality SE environment to improve team efficiency. Evidence: Cover letter...

  17. Michael McDowell

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Publicatons Contact Us Ring Status Current Schedule David Gagliano Argonne National Laboratory 9700 S. Cass Ave 431E020 Argonne, IL 60439 Phone: 252-6422 Fax: 252-7392 E-Mail:...

  18. Containment System Michael F

    Office of Scientific and Technical Information (OSTI)

    to reduce their liability, lower their insurance costs, or ... done on the same concrete pad which saves construction cost. ... Another innovation in rotational molded polyethylene is a ...

  19. Michael O'Connor

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Opportunities ESnet Staff & Org Chart Administration Advanced Network Technologies Cybersecurity Infrastructure, Identity & Collaboration Network Engineering Office of the CTO...

  20. Containment System Michael F

    Office of Scientific and Technical Information (OSTI)

    ... They cannot be raised with a crane and placed inside a containment. Many dealerships lack ... A crane is then used to erect the walls and connect adjoining panels. The bin walls are ...

  1. Dennis Michael Miotla

    Broader source: Energy.gov [DOE]

    Mr. Miotla currently serves as Chief Operating Officer for the Office of Nuclear Energy. Prior to his current position, Mr. Miotla was Deputy Director for Nuclear Facility Operations. In that...

  2. Michael O'Connor

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    O'Connor About ESnet Our Mission The Network ESnet History Governance & Policies Career Opportunities ESnet Staff & Org Chart ESnet Leadership Administration Advanced Network Technologies Cybersecurity Infrastructure, Identity & Collaboration Network Engineering Dale Carder Paul Wefel Network Planning Operational Enhancements Office of the CTO Science Engagement Tools Team Contact Us Contact Us Technical Assistance: 1 800-33-ESnet (Inside US) 1 800-333-7638 (Inside US) 1 510-486-7600

  3. Michael J. Banda

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    (NERSC). His previous work with x-ray science includes an appointment as Professor of Radiology and Director of the Laboratory of Radiological Biology at the University of...

  4. Michael Resch | Bioenergy | NREL

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    and hemicellulase enzyme characterization, working on projects funded by the Department of Energy through the BioEnergy Science Center and the Bioenergy Technologies Office. ...

  5. DIGITAL ARCHITECTURE PROJECT PLAN

    SciTech Connect (OSTI)

    Thomas, Ken

    2014-09-01

    The objective of this project is to develop an industry consensus document on how to scope and implement the underlying information technology infrastructure that is needed to support a vast array of real-time digital technologies to improve NPP work efficiency, to reduce human error, to increase production reliability and to enhance nuclear safety. A consensus approach is needed because: • There is currently a wide disparity in nuclear utility perspectives and positions on what is prudent and regulatory-compliant for introducing certain digital technologies into the plant environment. For example, there is a variety of implementation policies throughout the industry concerning electromagnetic compatibility (EMC), cyber security, wireless communication coverage, mobile devices for workers, mobile technology in the control room, and so forth. • There is a need to effectively share among the nuclear operating companies the early experience with these technologies and other forms of lessons-learned. There is also the opportunity to take advantage of international experience with these technologies. • There is a need to provide the industry with a sense of what other companies are implementing, so that each respective company can factor this into their own development plans and position themselves to take advantage of new work methods as they are validated by the initial implementing companies. In the nuclear power industry, once a better work practice has been proven, there is a general expectation that the rest of the industry will adopt it. However, the long-lead time of information technology infrastructure could prove to be a delaying factor. A secondary objective of this effort is to provide a general understanding of the incremental investment that would be required to support the targeted digital technologies, in terms of an incremental investment over current infrastructure. This will be required for business cases to support the adoption of these new

  6. Digital Identities | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Digital Identities Digital Identities banner-957163_960_720.jpg Public Key Infrastructure (PKI) is a comprehensive system that provides public-key encryption and digital signature services: Authentication - Uniquely identifies the information originator and consumer Confidentiality or Privacy - Assures information and data are protected from unauthorized access Data integrity - Assures data has not been accidentally or deliberately altered Non-Repudiation - Provides proof of the integrity and

  7. Stored program digital process controller

    DOE Patents [OSTI]

    Stephenson, Dwight L.

    1977-01-04

    A digital process control function generator wherein a timing clock, in conjunction with programmable read only memories controls variables in a process with respect to time.

  8. Digital Lumens | Open Energy Information

    Open Energy Info (EERE)

    Lumens Jump to: navigation, search Name: Digital Lumens Address: 110 Canal Street Place: Boston, Massachusetts Zip: 02114 Region: Greater Boston Area Product: Intelligent Lighting...

  9. Digital quadrature phase detection

    DOE Patents [OSTI]

    Smith, James A.; Johnson, John A.

    1992-01-01

    A system for detecting the phase of a frequency of phase modulated signal that includes digital quadrature sampling of the frequency or phase modulated signal at two times that are one quarter of a cycle of a reference signal apart, determination of the arctangent of the ratio of a first sampling of the frequency or phase modulated signal to the second sampling of the frequency or phase modulated signal, and a determination of quadrant in which the phase determination is increased by 2.pi. when the quadrant changes from the first quadrant to the fourth quadrant and decreased by 2.pi. when the quadrant changes from the fourth quadrant to the first quadrant whereby the absolute phase of the frequency or phase modulated signal can be determined using an arbitrary reference convention.

  10. Digital quadrature phase detection

    DOE Patents [OSTI]

    Smith, J.A.; Johnson, J.A.

    1992-05-26

    A system for detecting the phase of a frequency or phase modulated signal that includes digital quadrature sampling of the frequency or phase modulated signal at two times that are one quarter of a cycle of a reference signal apart, determination of the arctangent of the ratio of a first sampling of the frequency or phase modulated signal to the second sampling of the frequency or phase modulated signal, and a determination of quadrant in which the phase determination is increased by 2[pi] when the quadrant changes from the first quadrant to the fourth quadrant and decreased by 2[pi] when the quadrant changes from the fourth quadrant to the first quadrant whereby the absolute phase of the frequency or phase modulated signal can be determined using an arbitrary reference convention. 6 figs.

  11. Renewable Energy & Energy Efficiency Partnership (REEEP) Digital...

    Open Energy Info (EERE)

    (REEEP) Digital Library Jump to: navigation, search Tool Summary LAUNCH TOOL Name: Renewable Energy and Energy Efficiency Partnership (REEEP) Digital Library AgencyCompany...

  12. Digital Data Management Glossary | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Glossary Digital Data Management Glossary Digital data management glossary terms are defined below. Data preservation: Data preservation means providing for the usability of data ...

  13. NERSC Hosts Digital Stargazing Portal

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    NERSC Hosts Digital Stargazing Portal NERSC Hosts Digital Stargazing Portal June 4, 2015 Legacy highres 1400x800 Courtesy of DECam Legacy Survey Even non-scientists can now browse sky survey images hosted at NERSC. The DECam Legacy Survey has published the first in a series of web-based catalogs that will offer an update to images of the night sky originally taken with the 15-year-old camera of the Sloan Digital Sky Survey. In the spirit of the new information age, the survey will share frequent

  14. Digital-data receiver synchronization

    DOE Patents [OSTI]

    Smith, Stephen F.; Turner, Gary W.

    2005-08-02

    Digital-data receiver synchronization is provided with composite phase-frequency detectors, mutually cross-connected comparison feedback or both to provide robust reception of digital data signals. A single master clock can be used to provide frequency signals. Advantages can include fast lock-up time in moderately to severely noisy conditions, greater tolerance to noise and jitter when locked, and improved tolerance to clock asymmetries.

  15. Artifacts in digital coincidence timing

    DOE Public Access Gateway for Energy & Science Beta (PAGES Beta)

    Moses, W. W.; Peng, Q.

    2014-10-16

    Digital methods are becoming increasingly popular for measuring time differences, and are the de facto standard in PET cameras. These methods usually include a master system clock and a (digital) arrival time estimate for each detector that is obtained by comparing the detector output signal to some reference portion of this clock (such as the rising edge). Time differences between detector signals are then obtained by subtracting the digitized estimates from a detector pair. A number of different methods can be used to generate the digitized arrival time of the detector output, such as sending a discriminator output into amore » time to digital converter (TDC) or digitizing the waveform and applying a more sophisticated algorithm to extract a timing estimator.All measurement methods are subject to error, and one generally wants to minimize these errors and so optimize the timing resolution. A common method for optimizing timing methods is to measure the coincidence timing resolution between two timing signals whose time difference should be constant (such as detecting gammas from positron annihilation) and selecting the method that minimizes the width of the distribution (i.e. the timing resolution). Unfortunately, a common form of error (a nonlinear transfer function) leads to artifacts that artificially narrow this resolution, which can lead to erroneous selection of the 'optimal' method. In conclusion, the purpose of this note is to demonstrate the origin of this artifact and suggest that caution should be used when optimizing time digitization systems solely on timing resolution minimization.« less

  16. Apparatus and method for managing digital resources by passing digital resource tokens between queues

    DOE Patents [OSTI]

    Crawford, Henry J.; Lindenstruth, Volker

    1999-01-01

    A method of managing digital resources of a digital system includes the step of reserving token values for certain digital resources in the digital system. A selected token value in a free-buffer-queue is then matched to an incoming digital resource request. The selected token value is then moved to a valid-request-queue. The selected token is subsequently removed from the valid-request-queue to allow a digital agent in the digital system to process the incoming digital resource request associated with the selected token. Thereafter, the selected token is returned to the free-buffer-queue.

  17. Apparatus and method for managing digital resources by passing digital resource tokens between queues

    DOE Patents [OSTI]

    Crawford, H.J.; Lindenstruth, V.

    1999-06-29

    A method of managing digital resources of a digital system includes the step of reserving token values for certain digital resources in the digital system. A selected token value in a free-buffer-queue is then matched to an incoming digital resource request. The selected token value is then moved to a valid-request-queue. The selected token is subsequently removed from the valid-request-queue to allow a digital agent in the digital system to process the incoming digital resource request associated with the selected token. Thereafter, the selected token is returned to the free-buffer-queue. 6 figs.

  18. Precision digital pulse phase generator

    DOE Patents [OSTI]

    McEwan, Thomas E.

    1996-01-01

    A timing generator comprises a crystal oscillator connected to provide an output reference pulse. A resistor-capacitor combination is connected to provide a variable-delay output pulse from an input connected to the crystal oscillator. A phase monitor is connected to provide duty-cycle representations of the reference and variable-delay output pulse phase. An operational amplifier drives a control voltage to the resistor-capacitor combination according to currents integrated from the phase monitor and injected into summing junctions. A digital-to-analog converter injects a control current into the summing junctions according to an input digital control code. A servo equilibrium results that provides a phase delay of the variable-delay output pulse to the output reference pulse that linearly depends on the input digital control code.

  19. Precision digital pulse phase generator

    DOE Patents [OSTI]

    McEwan, T.E.

    1996-10-08

    A timing generator comprises a crystal oscillator connected to provide an output reference pulse. A resistor-capacitor combination is connected to provide a variable-delay output pulse from an input connected to the crystal oscillator. A phase monitor is connected to provide duty-cycle representations of the reference and variable-delay output pulse phase. An operational amplifier drives a control voltage to the resistor-capacitor combination according to currents integrated from the phase monitor and injected into summing junctions. A digital-to-analog converter injects a control current into the summing junctions according to an input digital control code. A servo equilibrium results that provides a phase delay of the variable-delay output pulse to the output reference pulse that linearly depends on the input digital control code. 2 figs.

  20. Mesofluidic two stage digital valve

    DOE Patents [OSTI]

    Jansen, John F; Love, Lonnie J; Lind, Randall F; Richardson, Bradley S

    2013-12-31

    A mesofluidic scale digital valve system includes a first mesofluidic scale valve having a valve body including a bore, wherein the valve body is configured to cooperate with a solenoid disposed substantially adjacent to the valve body to translate a poppet carried within the bore. The mesofluidic scale digital valve system also includes a second mesofluidic scale valve disposed substantially perpendicular to the first mesofluidic scale valve. The mesofluidic scale digital valve system further includes a control element in communication with the solenoid, wherein the control element is configured to maintain the solenoid in an energized state for a fixed period of time to provide a desired flow rate through an orifice of the second mesofluidic valve.

  1. Digitally controlled distributed phase shifter

    DOE Patents [OSTI]

    Hietala, Vincent M.; Kravitz, Stanley H.; Vawter, Gregory A.

    1993-01-01

    A digitally controlled distributed phase shifter is comprised of N phase shifters. Digital control is achieved by using N binary length-weighted electrodes located on the top surface of a waveguide. A control terminal is attached to each electrode thereby allowing the application of a control signal. The control signal is either one or two discrete bias voltages. The application of the discrete bias voltages changes the modal index of a portion of the waveguide that corresponds to a length of the electrode to which the bias voltage is applied, thereby causing the phase to change through the underlying portion of the waveguide. The digitally controlled distributed phase shift network has a total phase shift comprised of the sum of the individual phase shifters.

  2. Digitally controlled distributed phase shifter

    DOE Patents [OSTI]

    Hietala, V.M.; Kravitz, S.H.; Vawter, G.A.

    1993-08-17

    A digitally controlled distributed phase shifter is comprised of N phase shifters. Digital control is achieved by using N binary length-weighted electrodes located on the top surface of a waveguide. A control terminal is attached to each electrode thereby allowing the application of a control signal. The control signal is either one or two discrete bias voltages. The application of the discrete bias voltages changes the modal index of a portion of the waveguide that corresponds to a length of the electrode to which the bias voltage is applied, thereby causing the phase to change through the underlying portion of the waveguide. The digitally controlled distributed phase shift network has a total phase shift comprised of the sum of the individual phase shifters.

  3. Additional Guidance for EERE Digital Data Management Plans |...

    Office of Environmental Management (EM)

    Services Funding Digital Data Management Additional Guidance for EERE Digital Data Management Plans Additional Guidance for EERE Digital Data Management Plans Beyond the ...

  4. Plasma digital density determining device

    DOE Patents [OSTI]

    Sprott, Julien C.; Lovell, Thomas W.; Holly, Donald J.

    1976-01-01

    The density of a decaying plasma in an electrically conducting enclosure is determined by applying an excitation to the cavity formed by the enclosure and counting digitally the number of resonant frequencies traversed by the combination of the cavity and the decaying plasma.

  5. Federal Digital Strategy | OpenEI Community

    Open Energy Info (EERE)

    Federal Digital Strategy Home Graham7781's picture Submitted by Graham7781(2017) Super contributor 19 September, 2012 - 14:32 OpenEI part of the Federal Digital Strategy data...

  6. THE TENTH DATA RELEASE OF THE SLOAN DIGITAL SKY SURVEY: FIRST...

    Office of Scientific and Technical Information (OSTI)

    Aurelio R. ; Carr, Michael A. ; Chiappini, Cristina ; Chojnowski, S. Drew ; Chuang, Chia-Hsun ; Comparat, Johan ; Crepp, Justin R. ; Cristiani, Stefano ; Croft, Rupert A. C. ; ...

  7. Federal Digital Strategy | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Federal Digital Strategy Federal Digital Strategy New expectations require the Federal Government to be ready to deliver and receive digital information and services anytime, anywhere and on any device. It must do so safely, securely, and with fewer resources. To build for the future, the Federal Government has developed a Digital Strategy that embraces the opportunity to innovate more with less, and enables entrepreneurs to better leverage government data to improve the quality of services to

  8. EERE Digital Data Management | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Apply for Funding » EERE Digital Data Management EERE Digital Data Management The Office of Energy Efficiency and Renewable Energy (EERE) Policy on Digital Data Management is part of the implementation of the Department of Energy's Public Access Plan and was developed in alignment with the U.S. Department of Energy (DOE) Policy on Digital Data Management. EERE's mission is to create and sustain American leadership in the transition to a global clean energy economy. EERE leads the Department of

  9. Digital electronic bone growth stimulator

    DOE Patents [OSTI]

    Kronberg, James W.

    1995-01-01

    A device for stimulating bone tissue by applying a low level alternating current signal directly to the patient's skin. A crystal oscillator, a binary divider chain and digital logic gates are used to generate the desired waveforms that reproduce the natural electrical characteristics found in bone tissue needed for stimulating bone growth and treating osteoporosis. The device, powered by a battery, contains a switch allowing selection of the correct waveform for bone growth stimulation or osteoporosis treatment so that, when attached to the skin of the patient using standard skin contact electrodes, the correct signal is communicated to the underlying bone structures.

  10. Digital electronic bone growth stimulator

    DOE Patents [OSTI]

    Kronberg, J.W.

    1995-05-09

    A device is described for stimulating bone tissue by applying a low level alternating current signal directly to the patient`s skin. A crystal oscillator, a binary divider chain and digital logic gates are used to generate the desired waveforms that reproduce the natural electrical characteristics found in bone tissue needed for stimulating bone growth and treating osteoporosis. The device, powered by a battery, contains a switch allowing selection of the correct waveform for bone growth stimulation or osteoporosis treatment so that, when attached to the skin of the patient using standard skin contact electrodes, the correct signal is communicated to the underlying bone structures. 5 figs.

  11. The Honorable Michael White The Honorable Michael White

    Office of Legacy Management (LM)

    Sincerely, Off-SiteSavannah River,Division Office of Eastern Area Programs Enclosures ' Office of Environmental Restoration iitch; Ihc ., Cleveland; OH' R. Owens, Ohio Bureau ...

  12. Digital Mapping Of Structurally Controlled Geothermal Features...

    Open Energy Info (EERE)

    GPS Units And Pocket Computers Jump to: navigation, search OpenEI Reference LibraryAdd to library Conference Paper: Digital Mapping Of Structurally Controlled Geothermal Features...

  13. Digital Power Capital LLC | Open Energy Information

    Open Energy Info (EERE)

    Capital LLC Jump to: navigation, search Name: Digital Power Capital LLC Place: Greenwich, Connecticut Zip: 6830 Product: A private equity firm focused on new technologies that...

  14. Half Metallic Digital Ferromagnetic Heterostructure Composed...

    Office of Scientific and Technical Information (OSTI)

    Citation Details In-Document Search Title: Half Metallic Digital Ferromagnetic ... originating from hybridized Mn-d and nearest-neighbor Si-p states, and the corresponding ...

  15. Digital Surveying Directional Surveying Specialists | Open Energy...

    Open Energy Info (EERE)

    Surveying Specialists Jump to: navigation, search OpenEI Reference LibraryAdd to library Web Site: Digital Surveying Directional Surveying Specialists Author Directional Surveying...

  16. Half Metallic Digital Ferromagnetic Heterostructure Composed...

    Office of Scientific and Technical Information (OSTI)

    The authors propose and investigate the properties of a digital ferromagnetic ... Letters, vol. 96, NA, January 19, 2006, pp. 027211; Journal Volume: 96 Research Org: ...

  17. Digital Gas Inc | Open Energy Information

    Open Energy Info (EERE)

    Gas Inc Jump to: navigation, search Name: Digital Gas Inc Place: Dallas, Texas Sector: Solar Product: Company with a number of subsidiaries involved in mining, solar power, waste...

  18. Axial Tomography from Digitized Real Time Radiography

    DOE R&D Accomplishments [OSTI]

    Zolnay, A. S.; McDonald, W. M.; Doupont, P. A.; McKinney, R. L.; Lee, M. M.

    1985-01-18

    Axial tomography from digitized real time radiographs provides a useful tool for industrial radiography and tomography. The components of this system are: x-ray source, image intensifier, video camera, video line extractor and digitizer, data storage and reconstruction computers. With this system it is possible to view a two dimensional x-ray image in real time at each angle of rotation and select the tomography plane of interest by choosing which video line to digitize. The digitization of a video line requires less than a second making data acquisition relatively short. Further improvements on this system are planned and initial results are reported.

  19. Digital Data Management Requirements | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Requirements Digital Data Management Requirements To integrate data management planning into an overall research plan, the following requirements will apply to all Office of Energy ...

  20. Digital Data Management Roles and Responsibilities | Department...

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Digital Data Management Roles and Responsibilities The roles and responsibilities associated with Office of Energy Efficiency and Renewable Energy (EERE) data management plans ...

  1. Digital Data Management Frequently Asked Questions | Department...

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Frequently Asked Questions Digital Data Management Frequently Asked Questions Submitting a Data Management Plan 1. I am submitting an applicationproposal for research funding in ...

  2. Michael Himmel - Research Fellow | NREL

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    He has organized or co-organized 15 international conferences on aspects of biotechnology ... in the field of biochemistry and biotechnology, including the 2003 Gordon Research ...

  3. Michael Papka | Argonne National Laboratory

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Security Arms control & nonproliferation Biotechnology for national security Decision science Emergency & disaster management Policy analysis Public health preparedness ...

  4. Michael Wang | Argonne National Laboratory

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Dr. Wang is an associate editor of Biotechnology for Biofuels) and on the editorial boards of Frontiers of Energy and Power Engineering in China and Mitigation and Adaptation ...

  5. QER- Comment of Michael Kirkwood

    Broader source: Energy.gov [DOE]

    Please accept the attached comments from Pascoag Utility District regarding the Quadrennial Energy Review process. Out comments focus on the difficulty with our current RTO market structure and its lack of providing appropriate cost-effective solutions to our energy infrastructure needs in New England.

  6. Michael Knotek | Department of Energy

    Energy Savers [EERE]

    During this career, Knotek has led DOE-wide program formulation activities in Synchrotron Science and Facilities, Environmental Science, Fusion Sciences, High Performance ...

  7. Michael Levitt and Computational Biology

    Office of Scientific and Technical Information (OSTI)

    At that time, X-ray crystallography was used to ascertain the location of atoms like hydrogen, carbon and oxygen in larger molecules like proteins or DNA. Researchers then used the ...

  8. Michael Anthony | Argonne National Laboratory

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Anthony Electronics Assistant Telephone (630) 252-5304 E-mail mtanthony

  9. Michael North | Argonne National Laboratory

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    North collaborates with colleagues in the Global Security Sciences division. From right to left: Mike North, Pam Sydelko, Ignacio Martinez-Moyano, and Jessica Trail. Click image to enlarge. North collaborates with colleagues in the Global Security Sciences division. From right to left: Mike North, Pam Sydelko, Ignacio Martinez-Moyano, and Jessica Trail. Click image to enlarge. North maintains a healthy work-life balance by working out regularly at the Argonne Fitness Center. The gym is free,

  10. Michael Levitt and Computational Biology

    Office of Scientific and Technical Information (OSTI)

    ... Additional Web Pages: 3 Scientists Win Chemistry Nobel for Complex Computer Modeling, npr Stanford's Nobel Chemistry Prize Honors Computer Science, San Jose Mercury News Without ...

  11. Michael Contreras | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    the technology readiness of innovative aerodynamic decelerator systems funded by NASA. He holds a B.S. and M.S. from the University of California, Los Angeles, and a Ph.D. ...

  12. NREL: Energy Analysis - Michael Bahl

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    and Visualization Group Energy Forecasting and Modeling Group Market and Policy Impact Analysis Group Technology Systems and Sustainability Analysis Group Washington D.C....

  13. Michael Papka | Argonne National Laboratory

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    and analyzing data in the computational pipeline in order to find crucial information ... scientific curiosity Telephone 630-252-1556 E-mail papka@anl.gov Projects Petrel

  14. Michael Berube | Department of Energy

    Energy Savers [EERE]

    Code of Federal Regulations Part 712, Human Reliability Program | Department of Energy Clarification of Requirements for Certification in Title 10 Code of Federal Regulations Part 712, Human Reliability Program Memorandum, Clarification of Requirements for Certification in Title 10 Code of Federal Regulations Part 712, Human Reliability Program August 20, 2013 Clarification of Requirements for Certification in Title 10 Code of Federal Regulations Part 712, Human Reliability Program

  15. Michael F. Crowley | Bioenergy | NREL

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    He is the principal investigator for the U.S. Department of Energy's (DOE's) Bioenergy ... Process Design, Modeling, & Economics BioEnergy Science Center (BESC) Center for Direct ...

  16. NREL: Biomass Research - Michael Resch

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Resch's NREL career began in 2008 as a postdoctoral researcher working on cellulase and ... The ultimate goal of these studies is to improve the hydrolysis efficiency of cellulase ...

  17. Michael Greenstone | Department of Energy

    Office of Environmental Management (EM)

    This work includes an influential paper that demonstrated that high levels of particulates air pollution from coal combustion are causing the 500 million residents of Northern ...

  18. RF digital-to-analog converter

    DOE Patents [OSTI]

    Conway, P.H.; Yu, D.U.L.

    1995-02-28

    A digital-to-analog converter is disclosed for producing an RF output signal proportional to a digital input word of N bits from an RF reference input, N being an integer greater or equal to 2. The converter comprises a plurality of power splitters, power combiners and a plurality of mixers or RF switches connected in a predetermined configuration. 18 figs.

  19. RF digital-to-analog converter

    DOE Patents [OSTI]

    Conway, Patrick H.; Yu, David U. L.

    1995-01-01

    A digital-to analogue converter for producing an RF output signal proportional to a digital input word of N bits from an RF reference input, N being an integer greater or equal to 2. The converter comprises a plurality of power splitters, power combiners and a plurality of mixers or RF switches connected in a predetermined configuration.

  20. Optical analog-to-digital converter

    DOE Patents [OSTI]

    Vawter, G. Allen; Raring, James; Skogen, Erik J.

    2009-07-21

    An optical analog-to-digital converter (ADC) is disclosed which converts an input optical analog signal to an output optical digital signal at a sampling rate defined by a sampling optical signal. Each bit of the digital representation is separately determined using an optical waveguide interferometer and an optical thresholding element. The interferometer uses the optical analog signal and the sampling optical signal to generate a sinusoidally-varying output signal using cross-phase-modulation (XPM) or a photocurrent generated from the optical analog signal. The sinusoidally-varying output signal is then digitized by the thresholding element, which includes a saturable absorber or at least one semiconductor optical amplifier, to form the optical digital signal which can be output either in parallel or serially.

  1. The Digital Revolution in Measurements

    SciTech Connect (OSTI)

    Kirkham, Harold

    2013-02-27

    This paper considers what it means to make a measurement, and the changes in measurement technology over the years. The impact of the latest changes, which have resulted in most electrical measurements being done digitally, is explored. It is argued that the process of measurement can be considered equivalent to one of data compression. The smart grid will certainly result in many more signals being made available, and therefore a great deal of data compression will be taking place. Measurements will be made in parts of the power system presently unmonitored, as well as parts that are already well covered by instrumentation. The smart grid engineer must decide what it means to have “useful” information. Unless care is taken, the signal processing may furnish information that is not useful, and may not even make sense. The paper concludes by examining the possibilities of data compression from multiple separate signals.

  2. Lessons learned in digital upgrade projects digital control system implementation at US nuclear power stations

    SciTech Connect (OSTI)

    Kelley, S.; Bolian, T. W.

    2006-07-01

    AREVA NP has gained significant experience during the past five years in digital upgrades at operating nuclear power stations in the US. Plants are seeking modernization with digital technology to address obsolescence, spare parts availability, vendor support, increasing age-related failures and diminished reliability. New systems offer improved reliability and functionality, and decreased maintenance requirements. Significant lessons learned have been identified relating to the areas of licensing, equipment qualification, software quality assurance and other topics specific to digital controls. Digital control systems have been installed in non safety-related control applications at many utilities within the last 15 years. There have also been a few replacements of small safety-related systems with digital technology. Digital control systems are proving to be reliable, accurate, and easy to maintain. Digital technology is gaining acceptance and momentum with both utilities and regulatory agencies based upon the successes of these installations. Also, new plants are being designed with integrated digital control systems. To support plant life extension and address obsolescence of critical components, utilities are beginning to install digital technology for primary safety-system replacement. AREVA NP analyzed operating experience and lessons learned from its own digital upgrade projects as well as industry-wide experience to identify key issues that should be considered when implementing digital controls in nuclear power stations.

  3. The Digital Road to Scientific Knowledge Diffusion; A Faster...

    Office of Scientific and Technical Information (OSTI)

    The Digital Road to Scientific Knowledge Diffusion; A Faster, Better Way to Scientific Progress? Citation Details In-Document Search Title: The Digital Road to Scientific Knowledge ...

  4. Improved Engine Control Strategies Enabled by Digital Signal...

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Engine Control Strategies Enabled by Digital Signal-Processing Method for Zirconia Exhaust Sensors Improved Engine Control Strategies Enabled by Digital Signal-Processing Method ...

  5. DOE Policy for Digital Research Data Management | Department...

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    DOE Policy for Digital Research Data Management The Department of Energy (DOE) is ... Here, data management involves all stages of the digital data lifecycle including capture, ...

  6. Digital Data Management Additional Guidance | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Additional Guidance Digital Data Management Additional Guidance Beyond the Office of Energy Efficiency and Renewable Energy (EERE) digital data management requirements, the ...

  7. The Sloan Digital Sky Survey Monitor Telescope Pipeline (Journal...

    Office of Scientific and Technical Information (OSTI)

    The Sloan Digital Sky Survey Monitor Telescope Pipeline Citation Details In-Document Search Title: The Sloan Digital Sky Survey Monitor Telescope Pipeline You are accessing a...

  8. SEARCH FOR SUPERMASSIVE BLACK HOLE BINARIES IN THE SLOAN DIGITAL...

    Office of Scientific and Technical Information (OSTI)

    THE SLOAN DIGITAL SKY SURVEY SPECTROSCOPIC SAMPLE Citation Details In-Document Search Title: SEARCH FOR SUPERMASSIVE BLACK HOLE BINARIES IN THE SLOAN DIGITAL SKY SURVEY ...

  9. Methods and systems for detecting abnormal digital traffic (Patent...

    Office of Scientific and Technical Information (OSTI)

    Methods and systems for detecting abnormal digital traffic Title: Methods and systems for detecting abnormal digital traffic Aspects of the present invention encompass methods and ...

  10. ChemCam sends digital 'thumbs up'

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    ChemCam sends digital 'thumbs up' ChemCam sends digital 'thumbs up' Members of the team got a digital thumbs up about the operational readiness of their instrument just hours after the rover landed on Martian soil. August 8, 2012 Researchers from LANL and the French Space Agency examine data from the Mars Science Laboratory Curiosity rover from inside the ChemCam Operations Center at NASA's Jet Propulsion Laboratory on Monday, Aug. 6, 2012, less than a day after the rover landed on Mars. The

  11. Digital electronic bone growth stimulator

    DOE Patents [OSTI]

    Kronberg, J.W.

    1993-01-01

    The present invention relates to the electrical treatment of biological tissue. In particular, the present invention discloses a device that produces discrete electrical pulse trains for treating osteoporosis and accelerating bone growth. According to its major aspects and broadly stated, the present invention consists of an electrical circuit configuration capable of generating Bassett-type waveforms shown with alternative signals provide for the treatment of either fractured bones or osteoporosis. The signal generator comprises a quartz clock, an oscillator circuit, a binary divider chain, and a plurality of simple, digital logic gates. Signals are delivered efficiently, with little or no distortion, and uniformly distributed throughout the area of injury. Perferably, power is furnished by widely available and inexpensive radio batteries, needing replacement only once in several days. The present invention can be affixed to a medical cast without a great increase in either weight or bulk. Also, the disclosed stimulator can be used to treat osteoporosis or to strengthen a healing bone after the cast has been removed by attaching the device to the patient`s skin or clothing.

  12. Digital radiography: a focus on clinical utility

    SciTech Connect (OSTI)

    Price, R.R.; Rollo, F.D.; Monahan, W.G.; James, A.E. Jr.

    1982-01-01

    This book is interesting and timely in that it covers the new and exciting area of digital radiography. The book begins with chapters on the physics, instrumentation, and terminology of digital radiography. Then cost-benefit ratios, legal implication, and outpatient vs. inpatient studies are discussed. The clinical chapters follow. These are applicable to the head and neck, heart, lungs, kidneys, peripheral arteries, and pediatric population. Discussion then centers on intraarterial digital subtraction, clinical experience at Wisconsin, nonangiography application of digital radiology in children, and analog film-screen subtraction intravenous angiography. The book ends by briefly discussing microwave imaging, nuclear magnetic resonance, emission tomography, real-time and Doppler sonography, analog tomography, and the future photoelectric radiology department.

  13. Daylighting Digital Dimmer | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Daylighting Digital Dimmer Daylighting Digital Dimmer Lead Performer: MoJo Labs Inc. - Longmont, CO DOE Total Funding: $992,918 Project Term: July 28, 2015 - July 27, 2017 Funding Opportunity: FY2015 Phase II Release 2 SBIR Awards PROJECT OBJECTIVE The novel solid-state lighting control architecture successfully demonstrated during the Phase I effort produced a product called the RiteBriteTM, which uses a patent-pending technology called Task-to-Wall (TTW) Translation. It provides

  14. Concurrent signal combining and channel estimation in digital communications

    DOE Patents [OSTI]

    Ormesher, Richard C.; Mason, John J.

    2011-08-30

    In the reception of digital information transmitted on a communication channel, a characteristic exhibited by the communication channel during transmission of the digital information is estimated based on a communication signal that represents the digital information and has been received via the communication channel. Concurrently with the estimating, the communication signal is used to decide what digital information was transmitted.

  15. Everything Digital: Converting the world in 2 Exabytes

    SciTech Connect (OSTI)

    Lesk, Michael

    2003-11-05

    Nearly everything created today is in digital format: music is on digital CDs, documents come from word processing, still photography is switching to digital cameras and even movies are now edited digitally. What about the past? We have projects like the Million Book Project scanning one million books, and we know technically how to convert everything: the problems are legal, economic and organizational.

  16. Direct-to-digital holography and holovision

    DOE Patents [OSTI]

    Thomas, Clarence E.; Baylor, Larry R.; Hanson, Gregory R.; Rasmussen, David A.; Voelkl, Edgar; Castracane, James; Simkulet, Michelle; Clow, Lawrence

    2000-01-01

    Systems and methods for direct-to-digital holography are described. An apparatus includes a laser; a beamsplitter optically coupled to the laser; a reference beam mirror optically coupled to the beamsplitter; an object optically coupled to the beamsplitter, a focusing lens optically coupled to both the reference beam mirror and the object; and a digital recorder optically coupled to the focusing lens. A reference beam is incident upon the reference beam mirror at a non-normal angle, and the reference beam and an object beam are focused by the focusing lens at a focal plane of the digital recorder to form an image. The systems and methods provide advantages in that computer assisted holographic measurements can be made.

  17. Digital gate pulse generator for cycloconverter control

    DOE Patents [OSTI]

    Klein, Frederick F.; Mutone, Gioacchino A.

    1989-01-01

    The present invention provides a digital gate pulse generator which controls the output of a cycloconverter used for electrical power conversion applications by determining the timing and delivery of the firing pulses to the switching devices in the cycloconverter. Previous gate pulse generators have been built with largely analog or discrete digital circuitry which require many precision components and periodic adjustment. The gate pulse generator of the present invention utilizes digital techniques and a predetermined series of values to develop the necessary timing signals for firing the switching device. Each timing signal is compared with a reference signal to determine the exact firing time. The present invention is significantly more compact than previous gate pulse generators, responds quickly to changes in the output demand and requires only one precision component and no adjustments.

  18. Virtual mask digital electron beam lithography

    DOE Patents [OSTI]

    Baylor, L.R.; Thomas, C.E.; Voelkl, E.; Moore, J.A.; Simpson, M.L.; Paulus, M.J.

    1999-04-06

    Systems and methods for direct-to-digital holography are described. An apparatus includes a laser; a beamsplitter optically coupled to the laser; a reference beam mirror optically coupled to the beamsplitter; an object optically coupled to the beamsplitter, a focusing lens optically coupled to both the reference beam mirror and the object; and a digital recorder optically coupled to the focusing lens. A reference beam is incident upon the reference beam mirror at a non-normal angle, and the reference beam and an object beam are focused by the focusing lens at a focal plane of the digital recorder to form an image. The systems and methods provide advantages in that computer assisted holographic measurements can be made. 5 figs.

  19. Virtual mask digital electron beam lithography

    DOE Patents [OSTI]

    Baylor, Larry R.; Thomas, Clarence E.; Voelkl, Edgar; Moore, James A.; Simpson, Michael L.; Paulus, Michael J.

    1999-01-01

    Systems and methods for direct-to-digital holography are described. An apparatus includes a laser; a beamsplitter optically coupled to the laser; a reference beam mirror optically coupled to the beamsplitter; an object optically coupled to the beamsplitter, a focusing lens optically coupled to both the reference beam mirror and the object; and a digital recorder optically coupled to the focusing lens. A reference beam is incident upon the reference beam mirror at a non-normal angle, and the reference beam and an object beam are focused by the focusing lens at a focal plane of the digital recorder to form an image. The systems and methods provide advantages in that computer assisted holographic measurements can be made.

  20. Digitally programmable signal generator and method

    DOE Patents [OSTI]

    Priatko, G.J.; Kaskey, J.A.

    1989-11-14

    Disclosed is a digitally programmable waveform generator for generating completely arbitrary digital or analog waveforms from very low frequencies to frequencies in the gigasample per second range. A memory array with multiple parallel outputs is addressed; then the parallel output data is latched into buffer storage from which it is serially multiplexed out at a data rate many times faster than the access time of the memory array itself. While data is being multiplexed out serially, the memory array is accessed with the next required address and presents its data to the buffer storage before the serial multiplexing of the last group of data is completed, allowing this new data to then be latched into the buffer storage for smooth continuous serial data output. In a preferred implementation, a plurality of these serial data outputs are paralleled to form the input to a digital to analog converter, providing a programmable analog output. 6 figs.

  1. Digitally programmable signal generator and method

    DOE Patents [OSTI]

    Priatko, Gordon J.; Kaskey, Jeffrey A.

    1989-01-01

    A digitally programmable waveform generator for generating completely arbitrary digital or analog waveforms from very low frequencies to frequencies in the gigasample per second range. A memory array with multiple parallel outputs is addressed; then the parallel output data is latched into buffer storage from which it is serially multiplexed out at a data rate many times faster than the access time of the memory array itself. While data is being multiplexed out serially, the memory array is accessed with the next required address and presents its data to the buffer storage before the serial multiplexing of the last group of data is completed, allowing this new data to then be latched into the buffer storage for smooth continuous serial data output. In a preferred implementation, a plurality of these serial data outputs are paralleled to form the input to a digital to analog converter, providing a programmable analog output.

  2. Digitally programmable signal generator and method

    SciTech Connect (OSTI)

    Priatko, G.J.; Kaskey, J.A.

    1986-09-02

    A digitally programmable signal generator (DPSG) and method are disclosed. The DPSG can be used in applications such as Atomic Vapor Laser Isotope Separation (AVLIS) to create an optimal match between the process laser's spectral profile and that of the vaporized material. Other applications include optical telecommunications, non-optical telecommunication in the microwave and radio spectrum, radar, electronic countermeasures, high speed computer interconnects, local area networks, high definition video transport and the multiplexing of large quantities of slow digital memory into high speed data streams. This invention extends the operation of DPSGs into the GHz range, while preserving all of the current art's DPSGs' operational features.

  3. Sandia National Laboratories: Sandia Digital Media

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Sandia Digital Media Now Playing Featured Categories At Sandia Community Service Energy Engineering - Nuclear Health-Safety Historical Material National Security Sciences and Engineering Technical Training Search Videos Webinars There are no current webinars at this time. For Media Browse Sandia's Media B-Roll. For additional information, view Sandia's Media Contacts and Resources page.

  4. Development of GEM-Based Digital Hadron Calorimetry Using the...

    Office of Scientific and Technical Information (OSTI)

    Conference: Development of GEM-Based Digital Hadron Calorimetry Using the SLAC KPiX Chip Citation Details In-Document Search Title: Development of GEM-Based Digital Hadron...

  5. The Sloan Digital Sky Survey Quasar Lens Search. IV. Statistical...

    Office of Scientific and Technical Information (OSTI)

    The Sloan Digital Sky Survey Quasar Lens Search. IV. Statistical Lens Sample from the Fifth Data Release Citation Details In-Document Search Title: The Sloan Digital Sky Survey...

  6. Consortium on Digital Energy CoDE | Open Energy Information

    Open Energy Info (EERE)

    on Digital Energy CoDE Jump to: navigation, search Name: Consortium on Digital Energy (CoDE) Place: London, England, United Kingdom Zip: EC2A 1QP Product: London-based consortium...

  7. Recording multiple spatially-heterodyned direct to digital holograms in one digital image

    DOE Patents [OSTI]

    Hanson, Gregory R.; Bingham, Philip R.

    2008-03-25

    Systems and methods are described for recording multiple spatially-heterodyned direct to digital holograms in one digital image. A method includes digitally recording, at a first reference beam-object beam angle, a first spatially-heterodyned hologram including spatial heterodyne fringes for Fourier analysis; Fourier analyzing the recorded first spatially-heterodyned hologram by shifting a first original origin of the recorded first spatially-heterodyned hologram to sit on top of a first spatial-heterodyne carrier frequency defined by the first reference beam-object beam angle; digitally recording, at a second reference beam-object beam angle, a second spatially-heterodyned hologram including spatial heterodyne fringes for Fourier analysis; Fourier analyzing the recorded second spatially-heterodyned hologram by shifting a second original origin of the recorded second spatially-heterodyned hologram to sit on top of a second spatial-heterodyne carrier frequency defined by the second reference beam-object beam angle; applying a first digital filter to cut off signals around the first original origin and define a first result; performing a first inverse Fourier transform on the first result; applying a second digital filter to cut off signals around the second original origin and define a second result; and performing a second inverse Fourier transform on the second result, wherein the first reference beam-object beam angle is not equal to the second reference beam-object beam angle and a single digital image includes both the first spatially-heterodyned hologram and the second spatially-heterodyned hologram.

  8. The Focusing DIRC with Waveform Digitizing Electronics

    SciTech Connect (OSTI)

    Ruckman, L.L.; Nishimura, K.; Varner, G.S.; Vavra, J.; Aston, D.; Leith, D.W.G.S.; Ratcliff, B.; /SLAC

    2012-06-15

    We have tested a novel Cherenkov imaging detector called the Focusing DIRC (FDIRC) with waveform digitizing electronics. The prototype's concept is based on the BaBar DIRC with several important improvements: (a) much faster, pixelated photon detectors, (b) a mirror that makes the photon detector smaller and less sensitive to background in future applications, and (c) electronics capable of measuring single photon resolution to {sigma} {approx} 150 ps, which allows for correction due to chromatic error. In this test, the prototype has been instrumented with seven Hamamatsu H-8500 MaPMTs. Waveforms from {approx}450 pixels are digitized with waveform sampling electronics based on the BLAB2 ASIC, operating at a sampling speed of {approx}2.5 GSa/s. This version of the FDIRC prototype was tested in a large cosmic ray telescope providing muon tracks with {approx}1 mrad angular resolution and a muon momentum cutoff of {ge} 1.6 GeV/c.

  9. Fundamental Concepts of Digital Image Processing

    DOE R&D Accomplishments [OSTI]

    Twogood, R. E.

    1983-03-01

    The field of a digital-image processing has experienced dramatic growth and increasingly widespread applicability in recent years. Fortunately, advances in computer technology have kept pace with the rapid growth in volume of image data in these and other applications. Digital image processing has become economical in many fields of research and in industrial and military applications. While each application has requirements unique from the others, all are concerned with faster, cheaper, more accurate, and more extensive computation. The trend is toward real-time and interactive operations, where the user of the system obtains preliminary results within a short enough time that the next decision can be made by the human processor without loss of concentration on the task at hand. An example of this is the obtaining of two-dimensional (2-D) computer-aided tomography (CAT) images. A medical decision might be made while the patient is still under observation rather than days later.

  10. Digital computer operation of a nuclear reactor

    DOE Patents [OSTI]

    Colley, R.W.

    1982-06-29

    A method is described for the safe operation of a complex system such as a nuclear reactor using a digital computer. The computer is supplied with a data base containing a list of the safe state of the reactor and a list of operating instructions for achieving a safe state when the actual state of the reactor does not correspond to a listed safe state, the computer selects operating instructions to return the reactor to a safe state.

  11. Digital computer operation of a nuclear reactor

    DOE Patents [OSTI]

    Colley, Robert W.

    1984-01-01

    A method is described for the safe operation of a complex system such as a nuclear reactor using a digital computer. The computer is supplied with a data base containing a list of the safe state of the reactor and a list of operating instructions for achieving a safe state when the actual state of the reactor does not correspond to a listed safe state, the computer selects operating instructions to return the reactor to a safe state.

  12. The Digital Road to Scientific Knowledge Diffusion

    Office of Scientific and Technical Information (OSTI)

    Digital Road to Scientific Knowledge Diffusion A Faster, Better Way to Scientific Progress? By David E. Wojick, Walter L. Warnick, Bonnie C. Carroll, and June Crowe Introduction With the United States federal government spending over $130 billion annually for research and development, ways to increase the productivity of that research can have a significant return on investment. It is well known that all scientific advancement is based on work that has come before. Isaac Newton expressed this

  13. Image display device in digital TV

    DOE Patents [OSTI]

    Choi, Seung Jong

    2006-07-18

    Disclosed is an image display device in a digital TV that is capable of carrying out the conversion into various kinds of resolution by using single bit map data in the digital TV. The image display device includes: a data processing part for executing bit map conversion, compression, restoration and format-conversion for text data; a memory for storing the bit map data obtained according to the bit map conversion and compression in the data processing part and image data inputted from an arbitrary receiving part, the receiving part receiving one of digital image data and analog image data; an image outputting part for reading the image data from the memory; and a display processing part for mixing the image data read from the image outputting part and the bit map data converted in format from the a data processing part. Therefore, the image display device according to the present invention can convert text data in such a manner as to correspond with various resolution, carry out the compression for bit map data, thereby reducing the memory space, and support text data of an HTML format, thereby providing the image with the text data of various shapes.

  14. Portable Digital Radiography and Computed Tomography Manual

    SciTech Connect (OSTI)

    Not Available

    2007-11-01

    This user manual describes the function and use of the portable digital radiography and computed tomography (DRCT) scanner. The manual gives a general overview of x-ray imaging systems along with a description of the DRCT system. An inventory of the all the system components, organized by shipping container, is also included. In addition, detailed, step-by-step procedures are provided for all of the exercises necessary for a novice user to successfully collect digital radiographs and tomographic images of an object, including instructions on system assembly and detector calibration and system alignment. There is also a short section covering the limited system care and maintenance needs. Descriptions of the included software packages, the DRCT Digital Imager used for system operation, and the DRCT Image Processing Interface used for image viewing and tomographic data reconstruction are given in the appendixes. The appendixes also include a cheat sheet for more experienced users, a listing of known system problems and how to mitigate them, and an inventory check-off sheet suitable for copying and including with the machine for shipment purposes.

  15. DIGITAL TECHNOLOGY BUSINESS CASE METHODOLOGY GUIDE & WORKBOOK

    SciTech Connect (OSTI)

    Thomas, Ken; Lawrie, Sean; Hart, Adam; Vlahoplus, Chris

    2014-09-01

    Performance advantages of the new digital technologies are widely acknowledged, but it has proven difficult for utilities to derive business cases for justifying investment in these new capabilities. Lack of a business case is often cited by utilities as a barrier to pursuing wide-scale application of digital technologies to nuclear plant work activities. The decision to move forward with funding usually hinges on demonstrating actual cost reductions that can be credited to budgets and thereby truly reduce O&M or capital costs. Technology enhancements, while enhancing work methods and making work more efficient, often fail to eliminate workload such that it changes overall staffing and material cost requirements. It is critical to demonstrate cost reductions or impacts on non-cost performance objectives in order for the business case to justify investment by nuclear operators. This Business Case Methodology approaches building a business case for a particular technology or suite of technologies by detailing how they impact an operator in one or more of the three following areas: Labor Costs, Non-Labor Costs, and Key Performance Indicators (KPIs). Key to those impacts will be identifying where the savings are “harvestable,” meaning they result in an actual reduction in headcount and/or cost. The report consists of a Digital Technology Business Case Methodology Guide and an accompanying spreadsheet workbook that will enable the user to develop a business case.

  16. Digital I and C system upgrade integration technique

    SciTech Connect (OSTI)

    Huang, H. W.; Shih, C.; Wang, J. R.; Huang, K. C.

    2012-07-01

    This work developed an integration technique for digital I and C system upgrade, the utility can replace the I and C systems step by step systematically by this method. Inst. of Nuclear Energy Research (INER) developed a digital Instrumentation and Control (I and C) replacement integration technique on the basis of requirement of the three existing nuclear power plants (NPPs), which are Chin-Shan (CS) NPP, Kuo-Sheng (KS) NPP, and Maanshan (MS) NPP, in Taiwan, and also developed the related Critical Digital Review (CDR) Procedure. The digital I and C replacement integration technique includes: (I) Establishment of Nuclear Power Plant Digital Replacement Integration Guideline, (2) Preliminary Investigation on I and C System Digitalization, (3) Evaluation on I and C System Digitalization, and (4) Establishment of I and C System Digitalization Architectures. These works can be a reference for performing I and C system digital replacement integration of the three existing NPPs of Taiwan Power Company (TPC). A CDR is the review for a critical system digital I and C replacement. The major reference of this procedure is EPRI TR- 1011710 (2005) 'Handbook for Evaluating Critical Digital Equipment and Systems' which was published by the Electric Power Research Inst. (EPRI). With this document, INER developed a TPC-specific CDR procedure. Currently, CDR becomes one of the policies for digital I and C replacement in TPC. The contents of this CDR procedure include: Scope, Responsibility, Operation Procedure, Operation Flow Chart, CDR review items. The CDR review items include the comparison of the design change, Software Verification and Validation (SVandV), Failure Mode and Effects Analysis (FMEA), Evaluation of Diversity and Defense-in-depth (D3), Evaluation of Watchdog Timer, Evaluation of Electromagnetic Compatibility (EMC), Evaluation of Grounding for System/Component, Seismic Evaluation, Witness and Inspection, Lessons Learnt from the Digital I and C Failure Events. A

  17. EBR-II and TREAT Digitization Project

    SciTech Connect (OSTI)

    Griffith, George W.; Rabiti, Cristian

    2015-09-01

    Digitizing the technical drawings for EBR-II and TREAT provides multiple benefits. Moving the scanned or hard copy drawings to modern 3-D CAD (Computer Aided Drawing) format saves data that could be lost over time. The 3-D drawings produce models that can interface with other drawings to make complex assemblies. The 3-D CAD format can also include detailed material properties and parametric coding that can tie critical dimensions together allowing easier modification. Creating the new files from the old drawings has found multiple inconsistencies that are being flagged or corrected improving understanding of the reactor(s).

  18. Jefferson Lab Groups Encourage Digital Literacy Through Worldwide 'Hour

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    of Code' Campaign | Jefferson Lab Groups Encourage Digital Literacy Through Worldwide 'Hour of Code' Campaign Dana Cochran, Jefferson Lab staff member, helps students as they participate in a coding activity. Dana Cochran, Jefferson Lab staff member, helps students as they participate in a coding activity. Jefferson Lab Groups Encourage Digital Literacy Through Worldwide 'Hour of Code' Campaign To raise awareness of the need for digital literacy and a basic understanding of computer science,

  19. Human Reliability Analysis for Digital Human-Machine Interfaces

    SciTech Connect (OSTI)

    Ronald L. Boring

    2014-06-01

    This paper addresses the fact that existing human reliability analysis (HRA) methods do not provide guidance on digital human-machine interfaces (HMIs). Digital HMIs are becoming ubiquitous in nuclear power operations, whether through control room modernization or new-build control rooms. Legacy analog technologies like instrumentation and control (I&C) systems are costly to support, and vendors no longer develop or support analog technology, which is considered technologically obsolete. Yet, despite the inevitability of digital HMI, no current HRA method provides guidance on how to treat human reliability considerations for digital technologies.

  20. Physical + Digital: The New Power Couple |GE Global Research

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    product's individual parts and each part's unique lifecycles with digital tools like data lakes, model infrastructure, visualization, estimation, controls, and specialized...

  1. Jefferson Lab Groups Encourage Digital Literacy Through Worldwide...

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    To raise awareness of the need for digital literacy and a basic understanding of computer science, Jefferson Lab's Information Technology Division and Science Education staff are ...

  2. EERE Digital Data Management Frequently Asked Questions | Department...

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    Frequently Asked Questions EERE Digital Data Management Frequently Asked Questions Submitting a Data Management Plan 1. I am submitting an applicationproposal for research funding ...

  3. DOE Policy for Digital Research Data Management: Suggested Elements...

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Suggested Elements for a Data Management Plan DOE Policy for Digital Research Data Management: Suggested Elements for a Data Management Plan The Principal Investigator or other ...

  4. EERE Digital Data Management Glossary | Department of Energy

    Broader source: Energy.gov (indexed) [DOE]

    Digital data management glossary terms are defined below. Data preservation: Data preservation means providing for the usability of data beyond the lifetime of the research ...

  5. Impact of Utility Rates on PV Economics - Digital Appendix |...

    Open Energy Info (EERE)

    for The Impacts of Utility Rates and Building Type on the Economics of Commercial Photovoltaic Systems. This digital appendix contains supplement material for the NREL technical...

  6. Sandia Energy - Digital In-Line Holography Helps Researchers...

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    droplets of fuel are generated and behave in such cases. Sandia researchers developed 3-D measurement techniques based on digital in-line holography (DIH). Sandia advanced DIH...

  7. Digital X-ray Pipe Inspector Software

    Energy Science and Technology Software Center (OSTI)

    2009-10-29

    The Digital X-ray Pipe Inspector software requires a digital x-ray image of a pipe as input to the program, such as the image in Attachment A Figure 1. The image may be in a variety of software formats such as bitmap, jpeg, tiff, DICOM or DICONDE. The software allows the user to interactively select a region of interest from the image for analysis. This software is used to analyze digital x-ray images of pipes tomore » evaluate loss of wall thickness. The software specifically provides tools to analyze the image in (a) the pipe walls, (b) between the pipe walls. Traditional software uses only the information at the pipe wall while this new software also evaluates the image between the pipewalls. This makes the inspection process faster, more thorough, more efficient, and reduces expensive reshots. Attachment A Figure 2 shows a region of interest (a green box) drawn by the user around an anomaly in the pipe wall. This area is automatically analyzed by the external pipe wall tool with the result shown in Attachment A Figure 3. The edges of the pipe wall are detected and highlighted in yellow and areas where the wall thickness in less the the minimum wall threshold are shown in red. These measurements are typically made manually in other software programs, which lead to errors and inconsistency because the location of the edges are estimated by the user. Attachment A Figure 4 shows a region of interest (a green box) drawn by the user between the pipe walls. As can be seen there are intensity anomalies that correspond to wall defects. However, this information is not used directly by other software programs. In order to fully investigate these anomalies, the pipe would be reinspected in a different orientation to attempt to obtain a view of the anomaly in the pipe wall rather than the interior of the pipe. The pipe may need to be x-rayed a number of times to obtain the correct orientation. This is very costly and time consuming. The new software can perform the

  8. Digital radiography exposure indices: A review

    SciTech Connect (OSTI)

    Mothiram, Ursula; Brennan, Patrick C; Lewis, Sarah J; Moran, Bernadette; Robinson, John

    2014-06-15

    Digital radiography (DR) technologies have the advantage of a wide dynamic range compared to their film-screen predecessors, however, this poses a potential for increased patient exposure if left unchecked. Manufacturers have developed the exposure index (EI) to counter this, which provides radiographers with feedback on the exposure reaching the detector. As these EIs were manufacturer-specific, a wide variety of EIs existed. To offset this, the international standardised EI has been developed by the International Electrotechnical Commission (IEC) and the American Association of Physicists in Medicine (AAPM). The purpose of this article is to explore the current literature relating to EIs, beginning with the historical development of the EI, the development of the standardised EI and an exploration of common themes and studies as evidenced in the research literature. It is anticipated that this review will provide radiographers with a useful guide to understanding EIs, their application in clinical practice, limitations and suggestions for further research.

  9. Digital reverse propagation in focusing Kerr media

    SciTech Connect (OSTI)

    Goy, Alexandre; Psaltis, Demetri

    2011-03-15

    Lenses allow the formation of clear images in homogeneous linear media. Holography is an alternative imaging method, but its use is limited to cases in which it provides an advantage, such as three-dimensional imaging. In nonlinear media, lenses no longer work. The light produces intensity-dependent aberrations. The reverse propagation method used in digital holography to form images from recorded holograms works even in Kerr media [M. Tsang, D. Psaltis, and F. G. Omenetto, Opt. Lett. 28, 1873 (2003).]. The principle has been experimentally demonstrated recently in defocusing media [C. Barsi, W.Wan, and J.W. Fleischer, Nat. Photonics 3, 211 (2009).]. Here, we report experimental results in focusing media.

  10. Storage and retrieval of large digital images

    DOE Patents [OSTI]

    Bradley, J.N.

    1998-01-20

    Image compression and viewing are implemented with (1) a method for performing DWT-based compression on a large digital image with a computer system possessing a two-level system of memory and (2) a method for selectively viewing areas of the image from its compressed representation at multiple resolutions and, if desired, in a client-server environment. The compression of a large digital image I(x,y) is accomplished by first defining a plurality of discrete tile image data subsets T{sub ij}(x,y) that, upon superposition, form the complete set of image data I(x,y). A seamless wavelet-based compression process is effected on I(x,y) that is comprised of successively inputting the tiles T{sub ij}(x,y) in a selected sequence to a DWT routine, and storing the resulting DWT coefficients in a first primary memory. These coefficients are periodically compressed and transferred to a secondary memory to maintain sufficient memory in the primary memory for data processing. The sequence of DWT operations on the tiles T{sub ij}(x,y) effectively calculates a seamless DWT of I(x,y). Data retrieval consists of specifying a resolution and a region of I(x,y) for display. The subset of stored DWT coefficients corresponding to each requested scene is determined and then decompressed for input to an inverse DWT, the output of which forms the image display. The repeated process whereby image views are specified may take the form an interaction with a computer pointing device on an image display from a previous retrieval. 6 figs.