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Predicting Free-Surface Vortices with Single-Phase Simulations

机译:用单相模拟预测自由表面涡旋

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AbstractIn this article, single-phase, computational-fluid-dynamics simulations of free-surface vortices are presented. The purpose of the simulations is to determine the appropriate turbulence model for free-surface vortices, which could later be applied to simulations of flow in various engineering systems. The water flow in the laboratory model of a free-surface vortex was numerically simulated by unsteady single-phase computations. The vortex circumferential velocity, the downward velocity inside the vortex core and the predicted length of the free-surface vortex gas core were compared with available measurements. For the two-equation turbulence models, the results indicated the importance of the curvature correction (CC). The effect of the time-step size and the choice of the advection scheme were analyzed. For the tested case, it was determined that the unsteadiness of the flow was insufficient for the correct behavior of the scale-adaptive simulation (SAS) turbulence model. With the CC option, the ...
机译:摘要:本文提出了自由表面涡旋的单相,计算流体动力学模拟。模拟的目的是为自由表面涡旋确定合适的湍流模型,以后可将其应用于各种工程系统中的流动模拟。自由表面涡旋实验室模型中的水流通过非稳态单相计算进行了数值模拟。将涡旋圆周速度,涡旋核内部的向下速度以及自由表面涡旋气核的预测长度与可用的测量结果进行了比较。对于二方程湍流模型,结果表明了曲率校正(CC)的重要性。分析了时间步长的影响和对流方案的选择。对于测试案例,已确定流动的不稳定性不足以支持比例自适应模拟(SAS)湍流模型的正确行为。使用CC选项,...

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