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首页> 外文期刊>Journal of nuclear engineering and radiation science >Preliminary Investigations of the Feasibility of In-Vessel Melt Retention Strategies for a Small Modular Reactor Concept
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Preliminary Investigations of the Feasibility of In-Vessel Melt Retention Strategies for a Small Modular Reactor Concept

机译:用于小模块反应堆概念的船舶熔体保留策略可行性的初步研究

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The study presented in this paper is part of the technological surveillance performed at the Electricité De France (EDF) Research and Development (R&D) Center, in the Pericles department, and investigates the feasibility of modeling in-vessel melt retention (IVMR) phenomena for small modular reactors (SMR) with the modular accident analysis program version 5 in its EDF proprietary version (MAAP5_EDF), applying conservative hypotheses, such as constant decay heat after corium relocation to the lower head. The study takes advantage of a corium stratification model in the lower head of the vessel, developed by EDF R&D for large-sized prospective pressurized water reactors (PWRs). The analysis is based on a stepwise approach in order to evaluate the impact of various effects during IVMR conditions. First, an analytical calculation is performed in order to establish a reference case to which the MAAP5_EDF code results are compared. In a second step, the impact of the lower head geometry, vessel steel ablation, and subsequent relocation on the heat flux has been analyzed for cases where heat dissipation through radiation is neglected (in first approximation). Finally, the impact of heat losses through radiation as well as the crust formation around the pool has been assessed. The results demonstrate the applicability of the MAAP5_EDF code to SMRs, with heat fluxes lower than 1.1?MW/m ~( 2 ) for relevant cases, and identify modeling improvements.
机译:本文提出的研究是在法国(EDF)研究和开发(研发)中的技术监测的一部分,在Perles系,并调查船舶融化保留(IVMR)现象的建模可行性小型模块化反应器(SMR)与模块化事故分析程序版本5在其EDF专有版(MAAP5_EDF)中,涂抹保守假设,如叉子重新定位后的持续衰变热量。该研究利用了船质下部头部的芯冠状动脉模型,由EDF研发开发用于大型前景加压水反应器(PWR)。分析基于逐步方法,以便在IVMR条件下评估各种效应的影响。首先,执行分析计算,以便建立比较MAAP5_EDF代码结果的参考情况。在第二步中,对于通过忽略辐射的散热(在第一近似)的情况下,已经分析了下头几何形状,血管钢烧蚀和随后重新定位的影响。最后,通过辐射的热损失的影响以及池周围的地壳形成。结果证明了MAAP5_EDF代码对SMR的适用性,热量低于1.1?MW / m〜(2),用于相关病例,并确定建模改进。

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