会议论文详细信息
International Conference on Energy Sciences 2016
Analysis of Neutron Fission Reaction Rate in the Nuclear Fuel Cell Using Collision Probability Method with Non Flat Flux Approach
能源学;物理学
Shafii, Mohammad Ali^1
Department of Physics, Andalas University, Kampus Limau Manis, Padang West Sumatera, Indonesia^1
关键词: Collision probability;    Collision probability method;    High energy regions;    Linear Interpolation;    Neutron flux distributions;    Neutron transport equation;    Nuclear data library;    Power distributions;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/877/1/012013/pdf
DOI  :  10.1088/1742-6596/877/1/012013
来源: IOP
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【 摘 要 】

Neutron fission reaction rate in the nuclear reactor depends on macroscopic cross section and neutron flux distribution. The macroscopic cross section depends on the type of nuclide, the type of reaction, and the group energy of the neutrons relative to the nuclides. Flux distribution is very important in a nuclear reactor, because it is closely related to power distribution. In general, the integral neutron transport equation is solved using a collision probability (CP) method with a flat flux (FF) approach. Consequently, the CP matrix is also assumed constantly, therefore, the distribution of the neutron flux throughout the cell becomes flat. In the non-flat flux (NFF) approach, the neutron flux is modellled by linear interpolation as a function of mesh in the cylindrical nuclear fuel cell of a fast reactor type. This study uses the CP method with a NFF approach and it is applied to analyze the neutron fission reaction rate of a cylindrical nuclear fuel cell of a fast reactor type. Nuclear data library that is used in this study is JFS-3-J33 which belongs to the SLAROM computer code. Calculation results of the fission reaction rate shows that it is decrease in the high energy region due to the events of elastic collision that caused the neutron easier to lose of energy. The same fission reaction rate pattern occurs in the FF and NFF approaches.

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