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y Performance assessment of OpenFOAM and FLOW-3D in the numerical modeling of a low Reynolds number hydraulic jump

机译:在低雷诺数水力跳跃数值模拟中对OpenFOAM和FLOW-3D的性能评估

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A comparative performance analysis of the CFD platforms OpenFOAM and FLOW-3D is presented, focusing on a 3D swirling turbulent flow: a steady hydraulic jump at low Reynolds number. Turbulence is treated using RANS approach RNG k-epsilon. A Volume Of Fluid (VOF) method is used to track the air water interface, consequently aeration is modeled using an Eulerian-Eulerian approach. Structured meshes of cubic elements are used to discretize the channel geometry. The numerical model accuracy is assessed comparing representative hydraulic jump variables (sequent depth ratio, roller length, mean velocity profiles, velocity decay or free surface profile) to experimental data. The model results are also compared to previous studies to broaden the result validation. Both codes reproduced the phenomenon under study concurring with experimental data, although special care must be taken when swirling flows occur. Both models can be used to reproduce the hydraulic performance of energy dissipation structures at low Reynolds numbers. (C) 2016 Elsevier Ltd. All rights reserved.
机译:提出了CFD平台OpenFOAM和FLOW-3D的比较性能分析,重点是3D旋流湍流:在低雷诺数下的稳定液压跃变。使用RANS方法RNGk-ε处理湍流。流体体积(VOF)方法用于跟踪空气水界面,因此使用欧拉-欧拉方法对曝气进行建模。立方元素的结构化网格用于离散通道几何形状。通过比较代表性的水力跳跃变量(随后的深度比,辊长度,平均速度曲线,速度衰减或自由表面曲线)与实验数据,评估了数值模型的准确性。还将模型结果与以前的研究进行比较,以扩大结果验证的范围。尽管当旋流发生时必须特别注意,但两个代码均再现了研究中的现象并与实验数据相吻合。两种模型均可用于在低雷诺数下重现能量耗散结构的水力性能。 (C)2016 Elsevier Ltd.保留所有权利。

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