A NEW Global Variance Reduction Technique Based On Geometry and Energy Splitting/roulette

With the increase of computer resources and the application of the global variance reduction (GVR) method, it is a trend to obtain global distribution using the MC method in deep-penetration shielding calculation. The global variance reduction (GVR) technique uses a biased source and weight window t...

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Veröffentlicht in:Journal of nuclear engineering and radiation science 2020-01, Vol.6 (1)
Hauptverfasser: Zheng, Zheng, Li, Rui, Zhou, Yan, Mei, Qiliang, Deng, Li
Format: Artikel
Sprache:eng
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Zusammenfassung:With the increase of computer resources and the application of the global variance reduction (GVR) method, it is a trend to obtain global distribution using the MC method in deep-penetration shielding calculation. The global variance reduction (GVR) technique uses a biased source and weight window to decrease the MC calculation tally error for deep-penetration problems. However, excessive splitting of large weight particles out of the source region is time-consuming for problems with significant fluence rate variation. A new GVR technique, which performs space and energy splitting/roulette based on the importance of the phase space, is proposed in this paper to avoid excessive splitting of large weight particles. The improved GVR technique is applied to HBR-2 benchmark and CAP1400 dose rate distribution calculation. Numerical results show that the new GVR technique shows excellent performance for deep-penetration shielding calculation.
ISSN:2332-8983
2332-8975
DOI:10.1115/1.4045030