Efficient Time-Independent Method for Conceptual Design Optimization of the National Ignition Facility Primary Shield
Author:
Affiliation:
1. University of California, Berkeley, Department of Nuclear Engineering Berkeley, California 94720
2. Lawrence Liver more National Laboratory, Livermorey California 94551
Publisher
Informa UK Limited
Subject
General Engineering
Link
https://www.tandfonline.com/doi/pdf/10.13182/FST95-A30362
Reference20 articles.
1. “NOVA Upgrade Facility for Ignition and Gain,” UCRL-LR-106874, Lawrence Livermore National Laboratory (Mar. 1991).
2. Radiological Analysis for Nova Upgrade
3. E. GREENSPAN, W. G. PRICE, and H. FISHMAN, “SWAN: A Code for the Analysis and Optimization of Fusion Reactor Nucleonic Characteristics,” MATT-1008, Princeton Plasma Physics Laboratory (1973); see also report CCC-248, Radiation Shielding Information Center.
4. R. T. SANTORO, R. W. ROUSSIN, and J. M. BARNES, “FLUNG: Coupled 35-Group Neutron and 21-Group Gamma Ray, P3Cross Sections for Fusion Applications,” ORNL/TM-7828, Oak Ridge National Laboratory (1981)
5. E. F. PLECHATY and J. R. KIMLINGER, “TARTNP: A Coupled Neutron-Photon Monte-Carlo Transport Code,” UCRL-50400, Vol.14, Lawrence Livermore National Laboratory (1976).
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