WU Mingyu, ZHU Ying, LU Xu, MIAO Xue, WU Zongyun, LI Long, HU Yun, ZHAO Minfu. Research and Application of Nuclear-thermal-burnup Multi-physics Coupling Architecture[J]. Atomic Energy Science and Technology, 2021, 55(9): 1643-1649. DOI: 10.7538/yzk.2021.youxian.0312
Citation: WU Mingyu, ZHU Ying, LU Xu, MIAO Xue, WU Zongyun, LI Long, HU Yun, ZHAO Minfu. Research and Application of Nuclear-thermal-burnup Multi-physics Coupling Architecture[J]. Atomic Energy Science and Technology, 2021, 55(9): 1643-1649. DOI: 10.7538/yzk.2021.youxian.0312

Research and Application of Nuclear-thermal-burnup Multi-physics Coupling Architecture

  • In recent years, with the continuous development of high performance computing technology, relying on advanced supercomputers and mathematical physics calculation methods, multi-physical and multi-scale calculation of nuclear reactor become a hot research topic. According to the requirements of multi-physical coupling analysis of reactor core, the multi-physical coupling algorithm was studied, the multi-physical coupling system of reactor core based on neutron transport, burnup and thermal sub-channel was constructed, and the coupling program was developed. Multi-physical coupling calculation of neutron physics, burnup and thermal sub-channels was realized. The pressurized water reactor module model and the fast reactor model were used to carry out the transport-burnup coupling calculation test and the nuclear-thermal coupling calculation test, and the coupling system function is preliminarily verified.
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