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Numerical simulation of free surface flows with the level set method using an extremely high-order accuracy WENO advection scheme

机译:使用极高阶精度WENO平流方案的水平面设定方法对自由表面流进行数值模拟

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Three-dimensional dynamic gas-liquid flow simulations that accurately track the phase interface are numerically challenging. This article presents a numerical study of the performance of the level-set phase-interface tracking method when combined with extremely high order (7th to 11th) weighted essentially non-oscillatory (WENO) advection schemes for gas-liquid free surface flows. Comparisons between simulation results and prior benchmark results suggest that such a combination of methods can be satisfactorily applied to the level-set and Navier-Stokes equations for free surface flow simulations when volume conservation is enforced at every time step, and minor numerical oscillations are suppressed through use of an artificial viscosity term. In particular, simulations of solid body rotation, the unsteady flow following an ideal dam break, tank sloshing, and the rise of a single bubble all agree with analytical or experimental results to within 3.12% when the level-set method is combined with an 11th order WENO scheme. Furthermore, use of an 11th order WENO advection scheme actually has a computational cost advantage because, for the same accuracy, it can be used on a coarser grid when compared with a more-common second-order advection scheme; computational savings of up to 87% are possible.
机译:精确跟踪相界面的三维动态气液流动模拟在数值上具有挑战性。本文介绍了一种水平集相位界面跟踪方法与气态自由表面流的极高阶(第7至第11)加权的基本非振荡(WENO)对流方案相结合时的性能的数值研究。仿真结果与以前的基准结果之间的比较表明,这样的方法组合可以令人满意地应用于水平集和Navier-Stokes方程,用于自由表面流模拟,只要在每个时间步都进行体积守恒,并抑制较小的数值振荡通过使用人工粘度术语。尤其是,当将水平设置方法与第11种方法结合使用时,对固体旋转的模拟,理想的溃坝后的非稳定流动,储罐晃荡以及单个气泡的上升都与分析或实验结果相吻合,均在3.12%以内。订购WENO方案。此外,使用11阶WENO对流方案实际上具有计算成本优势,因为与更常见的二阶对流方案相比,对于相同的精度,它可以在较粗的网格上使用;最多可节省87%的计算量。

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