The Heat Transport System and Plant Design for the HYLIFE-II Fusion Reactor
Author:
Affiliation:
1. Department of Mechanical Engineering University of California Davis, CA 95616 (916) 752-2630
Publisher
Informa UK Limited
Subject
General Engineering
Link
https://www.tandfonline.com/doi/pdf/10.13182/FST91-A29415
Reference8 articles.
1. Bangerter, R.(1988), “Implications of ICF Target Requirements”, Memo, Lawrence Livermore National Laboratory, Livermore, CA.
2. Blink, J.A., et al.(1985), “The High-Yield Lithium Injection Fusion-Energy (HYLIFE) Reactor”, UCRL-53559, Lawrence Livermore National Laboratory Report.
3. Laser Program Annual Report for 1978, (1979), Vol.3, UCRL-50021-78, Lawrence Livermore National Laboratory.
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1. HYLIFE-II Reactor Chamber Design Refinements;Fusion Technology;1994-11
2. Neutronic Investigation of Inertial Fusion Energy Blankets for HYLIFE-II and Magnetohydrodynamic Applications;Fusion Technology;1994-07
3. Intermediate Heat Exchanger and Steam Generator Designs for the HYLIFE-II Fusion Power Plant Using Molten Salts;Fusion Technology;1992-05
4. Performance and Cost of the HYLIFE-II Balance of Plant;Fusion Technology;1992-05
5. Inertial Fusion Energy Power Plant Design Using the Compact Torus Accelerator: HYLIFE-CT;Fusion Technology;1992-05
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