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Guideline of Monte Carlo calculation. Neutron/gamma ray transport simulation by Monte Carlo method

This report condenses basic theories and advanced applications of neutron/gamma ray transport calculations in many fields of nuclear energy research. Chapters 1 through 5 treat historical progress of Monte Carlo methods, general issues of variance reduction technique, cross section libraries used in...

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Lenguaje:jpn
Publicado: Japan At. Res. Inst. 2002
Materias:
Acceso en línea:http://cds.cern.ch/record/748313
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collection CERN
description This report condenses basic theories and advanced applications of neutron/gamma ray transport calculations in many fields of nuclear energy research. Chapters 1 through 5 treat historical progress of Monte Carlo methods, general issues of variance reduction technique, cross section libraries used in continuous energy Monte Carlo codes. In chapter 6, the following issues are discussed: fusion benchmark experiments, design of ITER, experiment analyses of fast critical assembly, core analyses of JMTR, simulation of pulsed neutron experiment, core analyses of HTTR, duct streaming calculations, bulk shielding calculations, neutron/gamma ray transport calculations of the Hiroshima atomic bomb. Chapters 8 and 9 treat function enhancements of MCNP and MVP codes, and a parallel processing of Monte Carlo calculation, respectively. An important references are attached at the end of this report.
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institution Organización Europea para la Investigación Nuclear
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publisher Japan At. Res. Inst.
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spelling cern-7483132019-09-30T06:29:59Zhttp://cds.cern.ch/record/748313jpnGuideline of Monte Carlo calculation. Neutron/gamma ray transport simulation by Monte Carlo methodNuclear PhysicsThis report condenses basic theories and advanced applications of neutron/gamma ray transport calculations in many fields of nuclear energy research. Chapters 1 through 5 treat historical progress of Monte Carlo methods, general issues of variance reduction technique, cross section libraries used in continuous energy Monte Carlo codes. In chapter 6, the following issues are discussed: fusion benchmark experiments, design of ITER, experiment analyses of fast critical assembly, core analyses of JMTR, simulation of pulsed neutron experiment, core analyses of HTTR, duct streaming calculations, bulk shielding calculations, neutron/gamma ray transport calculations of the Hiroshima atomic bomb. Chapters 8 and 9 treat function enhancements of MCNP and MVP codes, and a parallel processing of Monte Carlo calculation, respectively. An important references are attached at the end of this report.Japan At. Res. Inst.JAERI-REVIEW-2002-004oai:cds.cern.ch:7483132002
spellingShingle Nuclear Physics
Guideline of Monte Carlo calculation. Neutron/gamma ray transport simulation by Monte Carlo method
title Guideline of Monte Carlo calculation. Neutron/gamma ray transport simulation by Monte Carlo method
title_full Guideline of Monte Carlo calculation. Neutron/gamma ray transport simulation by Monte Carlo method
title_fullStr Guideline of Monte Carlo calculation. Neutron/gamma ray transport simulation by Monte Carlo method
title_full_unstemmed Guideline of Monte Carlo calculation. Neutron/gamma ray transport simulation by Monte Carlo method
title_short Guideline of Monte Carlo calculation. Neutron/gamma ray transport simulation by Monte Carlo method
title_sort guideline of monte carlo calculation. neutron/gamma ray transport simulation by monte carlo method
topic Nuclear Physics
url http://cds.cern.ch/record/748313