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CFD Analysis for the Turbulent Flow Distribution in a Fuel Assembly with the Split-type Mixing Vanes by using the Advanced Scale-Resolving Turbulence Models

机译:通过使用先进的刻度分辨湍流模型对燃料组件中燃料组件湍流分布的CFD分析

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In general, the turbulent flow inside PWR (Pressurized Water Reactor) fuel assembly depends on the mixing vane configuration and the pattern of the mixing vane arrangement on the strap of the spacer grid. In this study, in order to examine the turbulent flow structure inside fuel assembly with the split-type mixing vanes, simulations were conducted with the commercial CFD (Computational Fluid Dynamics) software, ANSYS CFX R.14. Two different types of turbulence models, i.e. SAS (Scale-Adaptive Simulation)-SST (Shear Stress Transport) and DES (Detached Eddy Simulation), were used. The predicted results were compared with the measured data from the MATiS-H (Measurement and Analysis of Turbulent Mixing in Sub-channels-Horizontal) test facility. Although there were locally differences between the prediction and the measurement, ANSYS CFX R.14 predicted the time averaged velocity field in the reliable level. The predicted horizontal and vertical velocity components were more in agreement with the measured data than the axial velocity component. There was no significant difference in the prediction accuracy of both turbulence models.
机译:通常,PWR内部(加压水反应器)燃料组件内的湍流取决于混合叶片构造和混合叶片布置的图案在间隔栅格的带上。在本研究中,为了检查燃料组件内的湍流结构与分裂式混合叶片,用商业CFD(计算流体动力学)软件进行仿真,ANSYS CFX R.14进行。使用两种不同类型的湍流模型,即SAS(缩放 - 自适应模拟)-sst(剪切应力传输)和DES(分离涡仿真)。将预测结果与来自Matis-H的测量数据进行比较(副通道 - 水平的湍流混合)测试设施的测量和分析。尽管在预测和测量之间存在局部差异,但是ANSYS CFX R.14预测了可靠级别中的时间平均速度场。预测的水平和垂直速度分量与比轴向速度分量的测量数据更加吻合。湍流模型的预测准确性没有显着差异。

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