National Library of Energy BETA

Sample records for ningxia hubei irkutsk

  1. Guodian Ningxia Solar Energy Co Ltd | Open Energy Information

    Open Energy Info (EERE)

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  2. Ningxia Kaitian Windpower | Open Energy Information

    Open Energy Info (EERE)

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  3. Ningxia CDM Service Center | Open Energy Information

    Open Energy Info (EERE)

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  4. NATIONAL RESEARCH IRKUTSK STATE TECHNICAL UNIVERSITY

    E-Print Network [OSTI]

    Greifswald, Ernst-Moritz-Arndt-Universitšt

    , timber, fish, fur Mineral resources coal, oil, gas, iron, gold Climate sharp continental Time zone GMT REGION Area 768 000 sq.km Population 2,5 mln. Urban 80% Nationalities ~100 Natural resources water

  5. Hubei Sanhuan Development Co | Open Energy Information

    Open Energy Info (EERE)

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  6. Ningxia Ninghu Solar Energy Technology Co Ltd | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on QA:QAsource History ViewMayo, Maryland:NPI VenturesNew Hampshire: Energy ResourcesNiigata GeothermalQixin

  7. Ningxia Tianjing Shenzhou Wind Power Co Ltd | Open Energy Information

    Open Energy Info (EERE)

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  8. Ningxia Yinyi Wind Power Generation Co Ltd | Open Energy Information

    Open Energy Info (EERE)

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  9. Ningxia Sunshine Silicon Business Co Ltd | Open Energy Information

    Open Energy Info (EERE)

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  10. Ningxia Yinxing Energy PV Power Equipment Manufacturing Co Ltd | Open

    Open Energy Info (EERE)

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  11. Hubei Electric Power Survey Design Institute | Open Energy Information

    Open Energy Info (EERE)

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  12. Hubei Feilihua Quartz Glass Co Ltd | Open Energy Information

    Open Energy Info (EERE)

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  13. Hubei Huaying Hydropower Development Co Ltd | Open Energy Information

    Open Energy Info (EERE)

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  14. Hubei Province Enshi City Maweigou River Hydropower Development Co Ltd |

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on QA:QA J-E-1 SECTION J APPENDIX E LISTStar2-0057-EA JumpDuimen RiverScoring Tool JumpHuaning XinHuaying HydropowerOpen

  15. Hubei Province Nanzhang Xiakou Power Co Ltd | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on QA:QA J-E-1 SECTION J APPENDIX E LISTStar2-0057-EA JumpDuimen RiverScoring Tool JumpHuaning XinHuaying

  16. Hubei Xinda Bio oil Technology Co Ltd | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on QA:QA J-E-1 SECTION J APPENDIX E LISTStar2-0057-EA JumpDuimen RiverScoring Tool JumpHuaningXinda Bio oil Technology Co

  17. Hubei Yichang Tianyuan Hydro electric Development Co Ltd | Open Energy

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on QA:QA J-E-1 SECTION J APPENDIX E LISTStar2-0057-EA JumpDuimen RiverScoring Tool JumpHuaningXinda Bio oil Technology

  18. Ningxia Guodian CSI New Energy Development Co Ltd | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on QA:QAsource History ViewMayo, Maryland:NPI VenturesNew Hampshire: Energy ResourcesNiigata GeothermalQixin PhotoGuodian

  19. Kaolin in the net-like horizon of laterite in Hubei, south China

    E-Print Network [OSTI]

    Li, Zhaohui

    , halloysite, goethite and minor illite, whereas the white net-like veins contain mostly quartz, kaolinite, whereas yellow spots contain concentrations of kaolinite and goethite (Ambrosi & Nahon, 1986

  20. Hubei Shenzhou New Energy Power Generation Stock Co Ltd | Open Energy

    Open Energy Info (EERE)

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  1. Hubei Badong County Yandu River Electric Power Development Co Ltd | Open

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on QA:QA J-E-1 SECTION J APPENDIX E LISTStar2-0057-EA JumpDuimen RiverScoring Tool JumpHuaning Xin JiulongChunJiang

  2. Hubei Xiangfan Kaidi Renewable Energy Company Ltd Xiangfan RE | Open Energy

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on QA:QA J-E-1 SECTION J APPENDIX E LISTStar2-0057-EA JumpDuimen RiverScoring Tool JumpHuaning

  3. Development of a Low-Carbon Indicator System for China

    E-Print Network [OSTI]

    Price, Lynn

    2012-01-01

    provides rich sources for hydropower, Hubei Province hasapproach favors large hydropower producers and exporters

  4. IEEE TRANSACTIONS ON IMAGE PROCESSING, VOL. 18, NO. 5, MAY 2009 1025 A Video Coding Scheme Based on Joint

    E-Print Network [OSTI]

    University of Science and Techology, Wuhan, Hubei 430074, China (e-mail: flyinbati@hotmail.com). L. J

  5. DIVERSAS MANERAS DE GENERAR ENERGIA CON

    E-Print Network [OSTI]

    Gilbes, Fernando

    ;PAISES CON MAYOR CAPACIDAD HIDROELECTRICA Country Annual Hydroelectric Energy Production (TW-Rivera #12;The Three Gorges Dam project in Hubei, China, is the world's largest hydroelectric generating

  6. A&A manuscript no. (will be inserted by hand later)

    E-Print Network [OSTI]

    -14482 Potsdam, Germany 2 Institute for Solar-Terrestrial Physics, P.O. Box 4026, 664033 Irkutsk, Russia of Brandenburg (1999). The kinetic helicity has the same sign as the -effect ≠ not, as often assumed

  7. The Key Coal Producers ONLINE SUPPORTING MATERIALS to

    E-Print Network [OSTI]

    Patzek, Tadeusz W.

    The Key Coal Producers ONLINE SUPPORTING MATERIALS to A Global Coal Production Forecast with Multi's most important coal-producing area is North-Central China. The provinces of Inner Mongolia, Ningxia, Shaanxi and Shanxi together accounted for 83 percent of China's proven coal reserves in 2000, and Shanxi

  8. January 16, 2003 Quasiperiodic pulsations in a solar microwave burst

    E-Print Network [OSTI]

    White, Stephen

    January 16, 2003 Quasiperiodic pulsations in a solar microwave burst V. V. Grechnev1,2 , S. M. White2 and M. R. Kundu2 1 Institute of Solar-Terrestrial Physics, Lermontov St. 126, Irkutsk, Russia,kundu,white@astro.umd.edu ABSTRACT Quasiperiodic pulsations in solar flares can provide important information on physical conditions

  9. Characterization of Large Grain Nb Ingot Microstructure Using OIM and Laue Methods

    SciTech Connect (OSTI)

    D. Kang, D.C. Baars, T.R. Bieler, G. Ciovati, C. Compton, T.L. Grimm, A.A. Kolka

    2011-07-01

    Large grain niobium is being examined for fabricating superconducting radiofrequency cavities as an alternative to using rolled sheet with fine grains. It is desirable to know the grain orientations of a niobium ingot slice before fabrication, as this allows heterogeneous strain and surface roughness effects arising from etching to be anticipated. Characterization of grain orientations has been done using orientation imaging microscopy (OIM), which requires destructive extraction of pieces from an ingot slice. Use of a Laue camera allows nondestructive characterization of grain orientations, a process useful for evaluating slices and deformation during the manufacturing process. Five ingot slices from CBMM, Ningxia, and Heraeus are compared. One set of slices was deformed into a half cell and the deformation processes that cause crystal rotations have been investigated and compared with analytical predictions. The five ingot slices are compared in terms of their grain orientations and grain boundary misorientations, indicating no obvious commonalities, which suggests that grain orientations develop randomly during solidification.

  10. Characterization of Large Grain Nb Ingot Microstructure Using EBSP Mapping and Laue Camera Methods

    SciTech Connect (OSTI)

    Kang Di; Baars, Derek C.; Bieler, Thomas R.; Compton, Chris C.

    2011-03-31

    Large grain/single crystal Nb is currently being examined for fabricating superconducting radiofrequency (SRF) cavities as an alternative to using rolled sheet. Three ingot slices from different suppliers have been characterized and are compared. It is desirable to know the grain orientations of an ingot slice before fabrication. Characterization of an ingot slice has been done using electron backscattered pattern (EBSP) orientation imaging microscopy (OIM), which requires cutting out pieces from the slice, a destructive technique. Use of a Laue camera allows nondestructive characterization of grain orientations. The OIM method was used to examine ingot slices from CBMM and Ningxia, while the Laue method was used to examine a Heraeus ingot slice. The three ingot slices are compared in terms of their crystal orientations and grain boundary misorientations, indicating no obvious commonalities. The Laue method has practical advantages over OIM for evaluating ingot slices during the manufacturing process.

  11. Flare processes evolution and polarization changes of fine structures of solar radio emission in the April 11, 2013 event

    E-Print Network [OSTI]

    Chernov, Gennady; Tan, Baolin; Yan, Yihua; Tan, Chengming; Fu, Qijun; Karlicky, Marian; Fomichev, Valery

    2015-01-01

    The measurement of positions and sizes of radio sources in the observations of solar radio spectral fine structures in an M6.5 flare on April 11, 2013 were observed simultaneously by several radio instruments at four different observatories: Chinese Solar Broadband Radio Spectrometers at Huairou (SBRS/Huairou), Ondrejov Radio spectrograph in the Czech Republic (ORSC/Ondrejov), Badary Broadband Microwave spectropolarimeter (BMS/Irkutsk), and spectrograph/IZMIRAN (Moscow, Troitsk). The fine structures include microwave zebra patterns (ZP), fast pulsations, and fibers. They were observed during the flare brightening located at the tops of a loop arcade. The dynamics of the polarization was associated with the motion of the flare exciter, which was observed in EUV images at 171A and 131A (SDO/AIA). Combining magnetograms observed by the SDO Helioseismic and Magnetic Imager (HMI) with the homologous assumption of EUV flare brightening and ZP bursts, we deduced that the observed ZPs correspond to the ordinary radio...

  12. Petroleum systems of Jianghan Basin, Hubel Province, China

    SciTech Connect (OSTI)

    Cunningham, A.E.; Schaps, S.; McGregor, D.

    1996-12-31

    The Jianghan Basin is a Cretaceous-Tertiary nonmarine rift basin superimposed on a late Precambrian to Jurassic passive margin and foreland basin succession deformed by mid-Mesozoic folding and thrusting. Hence the basin has potential for superimposed petroleum systems. Oil production is established in a Tertiary petroleum system developed in two major depocenters, the Jiangling (west) and Qianjiang (east) Depressions. Lacustrine source beds in the early Eocene Xingouzhui and late Eocene Qianjiang Formations generated hydrocarbons during local maximum basin fill in the Oligocene to present. Very early, low temperature generation of petroleum occurs where Type 1S Qianjiang Formation kerogen is present. Tertiary fluvial and deltaic sandstones form reservoirs that trap oil in highs or rollover structures formed by normal faulting and salt movement. The pre-rift section contains large folds and good source-beds, but has high exploration risk. Factors limiting effectiveness of older petroleum systems are: (1) Uplift and erosion of thrust structures; (2) Overmaturation of pre-Permian source rocks prior to folding and thrusting; (3) Limited extent of secondary maturation of Late Paleozoic and Mesozoic source beds; and (4) Disruption of older traps and seals by widespread normal faulting. Production of hydrocarbons from Permian and Triassic rocks to the west of Hubei suggests that further seismic work and drilling are merited to evaluate pre-Tertiary potential in the Jianghan Basin.

  13. Petroleum systems of Jianghan Basin, Hubel Province, China

    SciTech Connect (OSTI)

    Cunningham, A.E. ); Schaps, S.; McGregor, D. )

    1996-01-01

    The Jianghan Basin is a Cretaceous-Tertiary nonmarine rift basin superimposed on a late Precambrian to Jurassic passive margin and foreland basin succession deformed by mid-Mesozoic folding and thrusting. Hence the basin has potential for superimposed petroleum systems. Oil production is established in a Tertiary petroleum system developed in two major depocenters, the Jiangling (west) and Qianjiang (east) Depressions. Lacustrine source beds in the early Eocene Xingouzhui and late Eocene Qianjiang Formations generated hydrocarbons during local maximum basin fill in the Oligocene to present. Very early, low temperature generation of petroleum occurs where Type 1S Qianjiang Formation kerogen is present. Tertiary fluvial and deltaic sandstones form reservoirs that trap oil in highs or rollover structures formed by normal faulting and salt movement. The pre-rift section contains large folds and good source-beds, but has high exploration risk. Factors limiting effectiveness of older petroleum systems are: (1) Uplift and erosion of thrust structures; (2) Overmaturation of pre-Permian source rocks prior to folding and thrusting; (3) Limited extent of secondary maturation of Late Paleozoic and Mesozoic source beds; and (4) Disruption of older traps and seals by widespread normal faulting. Production of hydrocarbons from Permian and Triassic rocks to the west of Hubei suggests that further seismic work and drilling are merited to evaluate pre-Tertiary potential in the Jianghan Basin.