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The preliminary neutronics analysis for a 10 MW molten salt reactor with solid fuel

机译:带有固体燃料的10 MW熔盐反应堆的初步中子学分析

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The 10 MW MSR-SF is a type of Pebble-bed Fluoride-salt-cooled High-temperature Reactors (PB-FHRs) and was designed by the Shanghai Institute of Applied Physics (SINAP), Chinese Academy of Sciences (CAS). The CAS planned to construct it around 2020 as the initial step with the expectation of a larger 100 MW PB-FHR. The PB-FHRs are composed of randomly distributed fuel pebbles consisting of randomly distributed TRISO coated particles, which is known as the feature of stochastic double heterogeneity. In this work, an explicit modeling method is adopted to consider the stochastic double heterogeneity and the code Serpent is used to execute the Monte Carlo neutron transport calculation. Moreover, the regular lattice method will introduce non-negligible bias in the neutronics analysis for the PB-FHR, while the exact explicit method can provide more reliable results. Therefore, the accurate three-dimensional power distribution of the 10 MW MSR-SF is obtained with the code Serpent based on the explicit modeling approach. The power peaking factor of the 10 MW MSR-SF is small and reasonable.
机译:10 MW MSR-SF是一种卵石床氟化物盐冷却的高温反应器(PB-FHRs),由中国科学院上海应用物理研究所(SINAP)设计。中国科学院计划在2020年左右建造它,这是第一步,预计会有更大的100 MW PB-FHR。 PB-FHR由由随机分布的TRISO涂层颗粒组成的随机分布的燃料小卵石组成,这被称为随机双重异质性特征。在这项工作中,采用显式建模方法来考虑随机双重异质性,并使用代码Serpent来执行蒙特卡洛中子输运计算。此外,规则晶格方法将在PB-FHR的中子学分析中引入不可忽略的偏差,而精确的显式方法可以提供更可靠的结果。因此,使用基于显式建模方法的代码Serpent,可以获得10 MW MSR-SF的精确三维功率分布。 10 MW MSR-SF的功率峰值因数小且合理。

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