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CFD simulations of light gas release and mixing in the Battelle Model-Containment with CFX

机译:使用CFX在Battelle模型包含中的轻气体释放和混合的CFD模拟

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In this validation work two turbulence models (k-ε and SST model) and two grids (a finer hybrid grid and a tetrahedral coarser grid) are considered in order to model helium release and dispersion. Simulation results are compared against an experiment of jet release phenomena in the Battelle Model Containment facility (BMC), a multi-compartment facility with a total volume of about 560 m~3. In the selected test, HYJET Jx7, helium was released into the containment at a speed of 42 m/s over a time of 200 s. Although the k-ε model is the most commonly used turbulence model in most Computational Fluid Dynamics (CFD) applications, it does not provide the most accurate predictions for this application. Alternatively the SST turbulence model has been employed giving more accurate results. This investigation provides a further confirmation that the validation of commercial CFD codes is always required in order to select the more suitable physical models and computational grids for each specific application.
机译:在此验证工作中,考虑了两个湍流模型(k-ε和SST模型)和两个栅格(一个更精细的混合栅格和一个四面体更粗糙的栅格)以建模氦气的释放和扩散。将模拟结果与在Battelle模型密闭设施(BMC)中进行的射流释放现象的实验进行了比较,该设施是一个多舱设施,总容积约为560 m〜3。在选定的HYJET Jx7测试中,氦在200 s内以42 m / s的速度释放到安全壳中。尽管k-ε模型是大多数计算流体动力学(CFD)应用中最常用的湍流模型,但它并未为该应用提供最准确的预测。可替代地,已经采用了SST湍流模型,从而给出了更准确的结果。这项研究进一步证实了始终需要对商用CFD代码进行验证,以便为每个特定应用选择更合适的物理模型和计算网格。

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