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CFD ANALYSIS OF PWR CORE TOP REGION – TOP FUEL ASSEMBLY AND TOP NOZZLE REGIONS

机译:压水堆核心顶部区域-顶部燃料组件和顶部喷嘴区域的CFD分析

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This paper aims to study the pressure distribution and flow patterns in the top fuel region of the AP1000TM 1) reactor using CFD. This study is being performed as part of a CFD evaluation of the flow in the top fuel and upper plenum regions of a PWR reactor vessel. The flow patterns, including cross flows in the top fuel region, are inter-related with the flow distribution and pressure forces in the reactor vessel upper plenum region. Before detailed computations of the flow in the whole top fuel and upper plenum region are performed, conducting local computations for segments of the domain can provide information about physical aspects of the flow as well as mesh sensitivities. The domain of interest in this paper is the top fuel region including the upper part of the fuel assembly (top grid, fuel rods, top nozzle), upper core plate, and core component hold-down device. The commercial CFD computer code STAR-CCM+is employed to generate the computational mesh, to solve the Reynolds-averaged Navier-Stokes equations for incompressible flow with a Realizable k-epsilon turbulence model, and to post-process the results. The complicated geometry of the top fuel region needs to be simplified so that the mesh size for the CFD model of the whole upper plenum and top fuel region does not exceed current software and hardware capabilities. In this study, several different trimmed meshes have been generated to study the effects of the geometries of the hold-down device and the lateral flows. Mesh sensitivity studies have been conducted for each individual part, i.e., the top grid, top nozzle, upper core plate, and hold-down device, in order to determine the proper geometrical simplifications. Pressure drop measurement data are compared with the predicted CFD results and act as a guideline for the mesh selection. These studies support the applicability of the geometrically simplified models and chosen mesh size for the CFD model of the full upper plenum and top fuel regions.
机译:本文旨在使用CFD研究AP1000TM 1)反应堆顶部燃料区域的压力分布和流型。这项研究是CFD评估PWR反应堆容器顶部燃料区和上部增压区中流动的一部分。包括顶部燃料区域中的横向流在内的流型与反应堆容器上部气室区域中的流分布和压力相互关联。在执行整个顶部燃料和上增压室区域中的流量的详细计算之前,对区域的各个部分进行局部计算可以提供有关流量的物理方面以及网格敏感度的信息。本文关注的领域是顶部燃料区域,包括燃料组件的上部(顶部栅格,燃料棒,顶部喷嘴),上芯板和芯组件压紧装置。使用商用CFD计算机代码STAR-CCM +生成计算网格,使用可实现的k-ε湍流模型求解不可压缩流的雷诺平均Navier-Stokes方程,并对结果进行后处理。需要简化顶部燃料区域的复杂几何形状,以使整个上部气室和顶部燃料区域的CFD模型的网格大小不会超过当前的软件和硬件功能。在这项研究中,已经生成了几种不同的修剪网格,以研究压紧装置的几何形状和侧向流动的影响。为了确定适当的几何简化,已经针对每个单独的部分,即顶部格栅,顶部喷嘴,上部芯板和压紧装置进行了网格敏感性研究。将压降测量数据与预测的CFD结果进行比较,并作为网格选择的准则。这些研究支持几何简化模型的适用性以及为整个上部气室和顶部燃料区域的CFD模型选择的网格大小。

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