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Friday, November 13, 2020 | History

2 edition of Leak tightness design basis for HTGR cavity liners found in the catalog.

Leak tightness design basis for HTGR cavity liners

R. M Grenier

Leak tightness design basis for HTGR cavity liners

  • 230 Want to read
  • 27 Currently reading

Published by The Office, for sale by the National Technical Information Service] in Oakland, Calif, [Springfield Va .
Written in English

    Subjects:
  • Gas cooled reactors -- Design and construction,
  • Foundations -- Testing

  • Edition Notes

    Statementby R. M. Grenier, R. J. Hsieh, and J. L. Pickering ; prepared under contract EY-76-C-03-0167, project agreement no. 65, for the San Francisco Operations Office, Department of Energy
    SeriesGA-A ; 14976
    ContributionsHsieh, R. J., joint author, Pickering, J. L., joint author, General Atomic Company, United States. Dept. of Energy. San Francisco Operations Office
    The Physical Object
    Pagination36 p. in various pagings :
    Number of Pages36
    ID Numbers
    Open LibraryOL14879564M

    Even though the LP-gas system is leak-checked and verified at the factory at the time of manufacture, normal usage (travel vibrations, etc.) could loosen the fittings. Consequently, it is wise to check the gas fittings periodically for leak tightness. One can daub some leak-detector solution (e.g., a . The High Flux Isotope Reactor (or HFIR) is a nuclear research reactor located at Oak Ridge National Laboratory (ORNL) in Oak Ridge, Tennessee, United ing at 85 MW, HFIR is one of the highest flux reactor-based sources of neutrons for condensed matter physics research in the United States, and it provides one of the highest steady-state neutron fluxes of any research reactor in the. Sodium fire protection by space isolation with nitrogen flooding was evaluated by performing a large-scale sodium fire test within a mockup of an FFTF secondary sodium system pipeway. The full scale ( ft/sup 3/) mockup was initially filled with air and its leak tightness set to correspond to that expected in an actual FFTF pipeway.


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Leak tightness design basis for HTGR cavity liners by R. M Grenier Download PDF EPUB FB2

Get this from a library. Leak tightness design basis for HTGR cavity liners. [R M Grenier; R J Hsieh; J L Pickering; General Atomic Company.; United States.

Department of. NUCLEAR ENGINEERING AND DESIGN 26 () NORTH-HOLLAND PUBLISHING COMPANY HTGR PLANT SAFETY DESIGN BASES G.L. WESSMAN and T.R. MOFFETTE Gulf General Atomic Company, San Diego, CaliforniaUSA Received 10 July The high temperature gas-cooled reactor (HTGR) has inherent and design safety features that are significant Cited by: 2.

HTGR design for process heat applications F. Bell, D. McEachern, and D. Morse General Atomic Company, San Diego Introduction Reactor Core Process Design Plant Arrangement Reformer Design Maintenance Future Work SESSION V: HIGH TEMPERATURE NUCLEAR HEAT SOURCES Studies have been carried out at General Atomic Company on the.

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Assessment of a new design for a reactor cavity cooling system in a very high temperature gas-cooled reactor Article in Nuclear Engineering and Technology 38(1) January with 11 Reads. Liners, closures, cooling coils, and anchor studs The main cavity liner and the penetration liners and closures together form a leak-tight barrier for the prim- ary coolant within the PCRV and function as a com- posite structure with the vessel, accepting the strains in the concrete which are transferred by the stud anchors and cooling by: 1.

The design reflects not only the licensing and operating experience from Fort St. Vrain, but the significant increase in the technology base available from the ongoing U.S.

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DEE and T. MACKEN General Atomic Company, San Diego, CaliforniaUSA The gas-cooled fast breeder reactor (GCFR) component development program is based on an extension of high tempera- ture gas-cooled reactor (HTGR Cited by: 2.

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