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Title: ALS superbend magnet system

Abstract

The Lawrence Berkeley National Laboratory is preparing to upgrade the Advanced Light Source (ALS) with three superconducting dipoles (Superbends). In this paper we present the final magnet system design which incorporates R&D test results and addresses the ALS operational concerns of alignment, availability, and economy. The design incorporates conduction-cooled Nb-Ti windings and HTS current leads, epoxy-glass suspension straps, and a Gifford-McMahon cryocooler to supply steady state refrigeration. We also present the current status of fabrication and testing.

Authors:
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Publication Date:
Research Org.:
Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States)
Sponsoring Org.:
USDOE Director, Office of Science. Office of High Energy and Nuclear Physics. Division of High Energy Physics (US)
OSTI Identifier:
816055
Report Number(s):
LBNL-46846
R&D Project: AU1314; TRN: US0304892
DOE Contract Number:
AC03-76SF00098
Resource Type:
Conference
Resource Relation:
Conference: Applied Superconductivity Conference, Virginia Beach, VA (US), 09/18/2000--09/22/2000; Other Information: PBD: 15 Sep 2000
Country of Publication:
United States
Language:
English
Subject:
43 PARTICLE ACCELERATORS; ADVANCED LIGHT SOURCE; ALIGNMENT; AVAILABILITY; DESIGN; DIPOLES; FABRICATION; MAGNETS; REFRIGERATION; SUPERCONDUCTIVITY; TESTING

Citation Formats

Zbasnik, J., Wang, S.T., Chen, J.Y., DeVries, G.J., DeMarco, R., Fahmie, M., Geyer, A., Green, M.A., Harkins, J., Henderson, T., Hinkson, J., Hoyer, E.H., Krupnick, J., Marks, S., Ottens, F., Paterson, J.A., Pipersky, P., Portmann, G., Robin, D.A., Schlueter, R.D., Steier, C., Taylor, C.E., and Wahrer, R.. ALS superbend magnet system. United States: N. p., 2000. Web.
Zbasnik, J., Wang, S.T., Chen, J.Y., DeVries, G.J., DeMarco, R., Fahmie, M., Geyer, A., Green, M.A., Harkins, J., Henderson, T., Hinkson, J., Hoyer, E.H., Krupnick, J., Marks, S., Ottens, F., Paterson, J.A., Pipersky, P., Portmann, G., Robin, D.A., Schlueter, R.D., Steier, C., Taylor, C.E., & Wahrer, R.. ALS superbend magnet system. United States.
Zbasnik, J., Wang, S.T., Chen, J.Y., DeVries, G.J., DeMarco, R., Fahmie, M., Geyer, A., Green, M.A., Harkins, J., Henderson, T., Hinkson, J., Hoyer, E.H., Krupnick, J., Marks, S., Ottens, F., Paterson, J.A., Pipersky, P., Portmann, G., Robin, D.A., Schlueter, R.D., Steier, C., Taylor, C.E., and Wahrer, R.. Fri . "ALS superbend magnet system". United States. doi:. https://www.osti.gov/servlets/purl/816055.
@article{osti_816055,
title = {ALS superbend magnet system},
author = {Zbasnik, J. and Wang, S.T. and Chen, J.Y. and DeVries, G.J. and DeMarco, R. and Fahmie, M. and Geyer, A. and Green, M.A. and Harkins, J. and Henderson, T. and Hinkson, J. and Hoyer, E.H. and Krupnick, J. and Marks, S. and Ottens, F. and Paterson, J.A. and Pipersky, P. and Portmann, G. and Robin, D.A. and Schlueter, R.D. and Steier, C. and Taylor, C.E. and Wahrer, R.},
abstractNote = {The Lawrence Berkeley National Laboratory is preparing to upgrade the Advanced Light Source (ALS) with three superconducting dipoles (Superbends). In this paper we present the final magnet system design which incorporates R&D test results and addresses the ALS operational concerns of alignment, availability, and economy. The design incorporates conduction-cooled Nb-Ti windings and HTS current leads, epoxy-glass suspension straps, and a Gifford-McMahon cryocooler to supply steady state refrigeration. We also present the current status of fabrication and testing.},
doi = {},
journal = {},
number = ,
volume = ,
place = {United States},
year = {Fri Sep 15 00:00:00 EDT 2000},
month = {Fri Sep 15 00:00:00 EDT 2000}
}

Conference:
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