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Key Publications — Monte Carlo Methods for Core Loading, Burnup and Shielding

Peer-reviewed papers on calculation methods: a loading pattern optimization method based on discrete differential evolution, a data decomposition method for full-core Monte Carlo transport–burnup calculation, and Monte Carlo shielding design with a large perturbation calculation method. Published in Annals of Nuclear Energy and Nuclear Science and Techniques.

Peer-reviewed papers on calculation methods: a loading pattern optimization method based on discrete differential evolution, a data decomposition method for full-core Monte Carlo transport–burnup calculation, and Monte Carlo shielding design with a large perturbation calculation method. Published in Annals of Nuclear Energy and Nuclear Science and Techniques.

Publications

01

A loading pattern optimization method based on discrete differential evolution

A loading pattern optimization method based on discrete differential evolution[J]. Annals of Nuclear Energy, 2019, 137: 107057.

Hui Ding; Guangyao Sun; Lijuan Hao; Bin Wu; Yican WuAnnals of Nuclear Energy2020

Full text is not available in preview. Open the publisher page to read the original paper.

02

Data decomposition method for full-core Monte Carlo transport–burnup calculation

Data decomposition method for full-core Monte Carlo transport–burnup calculation[J]. Nuclear Science and Techniques, 2018, 29(2).

Hong-Fei Liu; Peng Ge; Sheng-Peng Yu; Jing Song; Xiao-Lei ZhengNuclear Science and Techniques2018

Full text is not available in preview. Open the publisher page to read the original paper.

03

Monte Carlo shielding design with a large perturbation calculation method

Monte Carlo shielding design with a large perturbation calculation method[J]. Annals of Nuclear Energy, 2020, 138: 107186.

Wanbin Tan; Guangyao Sun; Pengcheng Long; Bin Wu; Jing SongAnnals of Nuclear Energy2020

Full text is not available in preview. Open the publisher page to read the original paper.

#Monte Carlo#transport-burnup coupling#full-core calculation#data decomposition#loading pattern optimization#discrete differential evolution#shielding design#perturbation calculation#peer-reviewed references