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Technical Papers

Monte Carlo Perturbation Theory Estimates of Sensitivities to System Dimensions

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Pages 199-223 | Received 14 Jul 2017, Accepted 30 Sep 2017, Published online: 11 Dec 2017

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Masahiro Fukushima & Masayuki Tojo. (2019) Recent activities in the field of reactor physics. Journal of Nuclear Science and Technology 56:12, pages 1061-1062.
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Hao Li, Ganglin Yu, Shanfang Huang, Mengfei Zhou, Guanlin Shi & Kan Wang. (2019) Calculating the k-Eigenvalue Sensitivity to Typical Geometric Perturbations with the Adjoint-Weighted Method in the Continuous-Energy Reactor Monte Carlo Code RMC. Nuclear Science and Engineering 193:11, pages 1186-1218.
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Alexis Jinaphanh, Giorgio Valocchi & Andrea Zoia. Implementation and Testing of Generalized Perturbation Theory Capabilities in TRIPOLI-4®. Nuclear Science and Engineering 0:0, pages 1-29.
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Toshihiro Yamamoto & Hiroki Sakamoto. (2023) Monte Carlo perturbation method for optimum surface geometry due to sloshing motion. Progress in Nuclear Energy 160, pages 104715.
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Hao Li, Ganglin Yu, Shanfang Huang & Kan Wang. (2021) Temperature perturbation method using on-the-fly treatment of the cross-sections in the resolved resonance region. Annals of Nuclear Energy 159, pages 108329.
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Toshihiro Yamamoto & Hiroki Sakamoto. (2021) Monte Carlo perturbation calculation for geometry change in fixed source problems with the perturbation source method. Progress in Nuclear Energy 132, pages 103611.
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Guanlin Shi, Conglong Jia, Kan Wang & Quan Cheng. (2021) GENERALIZED SENSITIVITY ANALYSIS CAPABILITY WITH THE DIFFERENTIAL OPERATOR METHOD IN RMC CODE. EPJ Web of Conferences 247, pages 15020.
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Guanlin Shi, Zhiyuan Feng, Conglong Jia, Kan Wang, Shanfang Huang & Quan Cheng. (2020) Geometric sensitivity analysis of generalized response function with RMC code. Annals of Nuclear Energy 149, pages 107824.
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Guanlin Shi, Ganglin Yu, Conglong Jia, Kan Wang, Shanfang Huang, Quan Cheng & Hao Li. (2020) Superhistory-based differential operator method for generalized responses sensitivity calculations. Annals of Nuclear Energy 140, pages 107291.
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Toshihiro Yamamoto & Hiroki Sakamoto. (2020) Monte Carlo sensitivity analysis method for the effective delayed neutron fraction with the differential operator sampling method. Annals of Nuclear Energy 140, pages 107108.
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Toshihiro Yamamoto & Hiroki Sakamoto. (2018) Monte Carlo perturbation methods using “virtual density” theory for calculating reactivity due to geometry change. Annals of Nuclear Energy 119, pages 362-373.
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