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首页> 外文期刊>International Journal for Numerical Methods in Fluids >Modified Lagrangian vortex method with improved boundary conditions for water waves past a thin bottom-standing barrier
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Modified Lagrangian vortex method with improved boundary conditions for water waves past a thin bottom-standing barrier

机译:改进的拉格朗日涡旋方法,改进了边界条件对穿过薄壁底部障碍物的水波的影响

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Herein, the modified Lagrangian vortex method (LVM), a hybrid analytical-numerical algorithm per se, is devised to simulate the process of vortex formation and shedding from the sharp edge of a zero-thickness vertical plate under linear water-wave attack. Application of the Helmholtz decomposition facilitates a convenient switch between the inviscid- and viscous-flow models, thereby enabling easy incorporation of vorticity effects into the potential-flow calculations for the viscous-dominated region. In evaluating the potential-flow component, making good use of the quickly convergent technique with singular basis functions, correctly capturing the singular behavior in velocity fields near the tip of the plate, leads to a considerable reduction of computational burdens and to 12-decimal-place accuracy. The viscous correction is carried out via the meshless LVM with improved boundary conditions. Comparisons with previously published results show good agreement. Simulations of vortex generation and evolution illuminate the ability of the present method, and provide a supplement to pertinent experimental works. The hybrid scheme proposed herein allows flexibility for the former LVM and convenience in the code development. Such a compromise fits particularly well for the high-resolution modeling of sharp-edged vortex shedding without heavy numerical developments. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:在本文中,设计了一种改进的拉格朗日涡旋方法(LVM),其本身是一种混合解析数值算法,用于模拟在线性水波侵袭下零厚度垂直板的尖锐边缘涡旋形成和脱落的过程。亥姆霍兹分解的应用有助于在粘性流模型和粘性流模型之间方便地进行切换,从而可以轻松地将涡旋效应纳入粘性为主区域的势流计算中。在评估势流分量时,充分利用带有奇异基函数的快速收敛技术,正确捕获板端附近速度场中的奇异行为,可显着减少计算负担并减少12位小数。位置准确性。粘性校正是通过具有改进边界条件的无网格LVM进行的。与先前发布的结果进行比较显示出很好的一致性。涡流产生和演化的模拟阐明了本方法的能力,并为相关实验工作提供了补充。本文提出的混合方案允许前者的LVM具有灵活性,并为代码开发提供了便利。这种折衷方案非常适合没有大量数值发展的尖锐涡旋脱落的高分辨率建模。版权所有(c)2014 John Wiley&Sons,Ltd.

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