(An) equivalence relation and grey dancoff factor calculated by monte carlo method for irregular fuel assemblies불규칙한 핵연료집합체를 위한 등가관계식과 몬테칼로기법으로 계산한 Grey Dancoff 인자

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The equivalence theorem providing a relation between a homogeneous and a heterogeneous medium has been used in the resonance calculation for the heterogeneous system. The accuracy of the resonance calculation based on the equivalence theorem depends on how accurately the fuel collision probability is expressed by the rational terms. The fuel collision probability is related to the Dancoff factor in closely packed lattices. The calculation of the Dancoff factor is one of the most difficult problems in the core analysis because the actual configuration of fuel elements in the lattice is very complex. Most reactor physics codes currently used are based on the roughly calculated black Dancoff factor, where total cross section of the fuel is assumed to be infinite. Even the black Dancoff factors have not been calculated accurately though many methods have been proposed. The equivalence theorem based on the black Dancoff factor causes some errors inevitably due to the approximations involved in the Dancoff factor calculation and the derivation of the fuel collision probability, but they have not been evaluated seriously before. In this study, a Monte Carlo program - G-DANCOFF - was developed to calculate not only the traditional black Dancoff factor but also grey Dancoff factor where the medium is described realistically. G-DANCOFF calculates the Dancoff factor based on its collision probability definition in an arbitrary arrangement of cylindrical fuel pins in full three-dimensional fashion. G-DANCOFF was verified by comparing the black Dancoff factors calculated for the geometries where accurate solutions are available. With 100,000 neutron histories, the calculated results by G-DANCOFF were matched within maximum 1% and in most cases less than 0.2% with previous results. G-DANCOFF also provides graphical information on particle tracks which makes it possible to calculate the Dancoff factor independently. The effects of the Dancoff factor on the criticality cal...
Advisors
Cho, Nam-Zinresearcher조남진researcher
Description
한국과학기술원 : 원자력공학과,
Publisher
한국과학기술원
Issue Date
2000
Identifier
157967/325007 / 000945129
Language
eng
Description

학위논문(박사) - 한국과학기술원 : 원자력공학과, 2000.2, [ ix, 120 p. ]

Keywords

Monte Carlo method; Grey Dancoff factor; Equivalence relation; Cluster fuel; 원형핵연료집합체; 몬테칼로기법; Grey Dancoff 인자; 등가관계식

URI
http://hdl.handle.net/10203/48904
Link
http://library.kaist.ac.kr/search/detail/view.do?bibCtrlNo=157967&flag=dissertation
Appears in Collection
NE-Theses_Ph.D.(박사논문)
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