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首页> 外文期刊>Annals of nuclear energy >Coolant flow field in a real geometry of PWR downcomer and lower plenum
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Coolant flow field in a real geometry of PWR downcomer and lower plenum

机译:压水堆下降管和下增压室的真实几何形状中的冷却剂流场

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摘要

Nuclear vendors and utilities perform numerous simulations and analyses in order to ensure the safe operation of nuclear power plants (NPPs). In general, the simulations are carried out using vendor-specific design codes and best-estimate system analysis codes, most of which were developed based on one-dimensional lumped parameter models. During the past decade, however, computers, parallel computation methods, and three-dimensional computational fluid dynamics (CFD) codes have been dramatically enhanced. The use of advanced commercial CFD codes is considered beneficial in the safety analysis and design of NPPs. The present work analyzes the flow distribution in the downcomer and lower plenum of Korean standard nuclear power plants (KSNPs) using STAR-CD. The lower plenum geometry of a PWR is very complicated since there are so many reactor internals, which hinders in CFD analysis for real reactor geometry up to now. The present work takes advantage of 3D CAD model so that real geometry of a PWR is used. The results give a clear figure about flow fields in the downcomer and lower plenum of a PWR, which is one of major safety concerns.
机译:核供应商和公用事业公司进行了大量的模拟和分析,以确保核电厂(NPP)的安全运行。通常,使用供应商特定的设计代码和最佳估计的系统分析代码进行仿真,其中大多数是基于一维集总参数模型开发的。然而,在过去的十年中,计算机,并行计算方法和三维计算流体动力学(CFD)代码得到了显着增强。在高级核电厂的安全分析和设计中,使用高级商业CFD代码被认为是有益的。本工作使用STAR-CD分析了韩国标准核电站(KSNP)的下导管和下增压腔的流量分布。由于反应堆内部零件太多,因此PWR的下部气室几何结构非常复杂,这阻碍了迄今为止CFD分析实际反应堆几何形状的工作。本工作利用3D CAD模型的优势,因此可以使用PWR的实际几何形状。结果清楚地显示了压水堆降水管和下气室的流场,这是主要的安全隐患之一。

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