首页> 外文期刊>Nuclear Technology >Wall-Modeled Large Eddy Simulation of the Flow Through PWR Fuel Assemblies at Re_H = 66 000—Validation on CALIFS Experimental Setup
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Wall-Modeled Large Eddy Simulation of the Flow Through PWR Fuel Assemblies at Re_H = 66 000—Validation on CALIFS Experimental Setup

机译:在Re_H = 66 000时,通过PWR燃料组件的壁面建模大涡流模拟-在CALIFS实验装置上的验证

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The EDF aims to identify what causes fuel assembly vibrations in pressurized water reactors. The present work focuses on the validation of pressure fluctuations along the central rod of a 5 × 5 configuration for wall-modeled large eddy simulations. New experiments, called CALIFS, have been carried out by the Atomic Energy Commission (CEA) on a 5 × 5 mixing vane grid (MVG) in the framework of the Fuel Assembly EDF/CEA/FRAMATOME tripartite project. In addition to pressure drop and velocity measurements using particle image velocimetry, pressure measurements have been performed along the central rod. The computational domain is representative of a span of the experimental mock-up composed of a 5 × 5 rod bundle equipped with a split-type MVG. The hydraulic Reynolds number is equal to 66 000 and periodic boundary conditions are imposed in the streamwise direction. The mesh is fully hexahedral and conformal. Computations give very satisfactory results for the pressure drop, the mean velocity, and the Reynolds stresses at different locations. The root-mean-square of the pressure along the central rod is also compared to experimental data at different heights. The behavior is in very good agreement up to five hydraulic diameters downstream of the MVG.
机译:EDF旨在确定是什么原因导致压水堆中燃料组件振动。目前的工作集中在壁面模拟大涡模拟的5×5构型的中心杆沿压力波动的验证上。原子能委员会(CEA)在燃料组件EDF / CEA / FRAMATOME三方项目框架下,对5×5混合叶片网格(MVG)进行了新的实验,称为CALIFS。除了使用粒子图像测速仪进行压降和速度测量外,还沿中心杆进行了压力测量。计算域代表了一个实验模型的跨度,该模型由配备了分体式MVG的5×5棒束组成。水力雷诺数等于66 000,并且在水流方向施加周期性边界条件。网格是完全六面体的和保形的。对于不同位置的压降,平均速度和雷诺应力,计算得出非常令人满意的结果。还将沿中心杆的压力的均方根与不同高度的实验数据进行比较。行为在MVG的五个液压直径以下非常吻合。

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