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Validation of a Computational Simulation Method for Evaluating Thermal Stratification in the Reactor Vessel Upper Plenum of Fast Reactors

机译:快速反应堆反应堆容器上层全层热分层计算仿真方法的验证

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摘要

Validation of a numerical simulation method is carried out for thermal stratification phenomena in the reactor vessel upper plenum of advanced sodium-cooled fast reactors. The study mainly focuses on the fundamental applicability of commercial computational fluid dynamics (CFD) codes as well as an in-house code to the evaluation of thermal stratification behavior including the simulation methods such as spatial mesh distribution and RANS-type turbulence models in the analyses. Two kinds of thermal stratification tests are used in the validation, which is done for relatively simple- and conventional-type upper plenum geometries with water and sodium as working fluids. Quantitative comparison between the simulation and test results clarifies that when used with a high-order discretization scheme of the convection term, the investigated CFD codes are applicable to evaluations of the basic behaviors of thermal stratification and especially the vertical temperature gradient of the stratification interface, which is important from the viewpoint of structural integrity. No remarkable difference is seen in the simulation results obtained using different RANS turbulence models, namely, the standard k-e model, the RNG k-e model, and the Reynolds stress model. It is further confirmed in a numerical experiment that the distribution of two or more meshes within the stratification interface will lead to accurate simulation of the interface temperature gradient with less than 10% error.
机译:对于先进的钠冷快堆的反应堆容器上部气室中的热分层现象进行了数值模拟方法的验证。本研究主要关注商业计算流体动力学(CFD)代码以及内部代码在热分层行为评估中的基本适用性,包括分析中的模拟方法,例如空间网格分布和RANS型湍流模型。 。验证中使用了两种热分层测试,它们是针对相对简单和常规类型的以水和钠为工作流体的上增压室几何形状的。仿真和测试结果之间的定量比较表明,当与对流项的高阶离散化方案一起使用时,研究的CFD代码适用于评估热分层的基本行为,尤其是分层界面的垂直温度梯度,从结构完整性的角度来看这很重要。在使用不同的RANS湍流模型(即标准k-e模型,RNG k-e模型和雷诺应力模型)获得的模拟结果中,没有看到明显的差异。在数值实验中进一步证实,分层界面内两个或多个网格的分布将导致界面温度梯度的准确模拟,且误差小于10%。

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