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Simulations of multiphase flows with multiple length scales using moving mesh interface tracking with adaptive meshing

机译:使用自适应网格划分的运动网格界面跟踪模拟多长度尺度的多相流

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In multiphase flows, the length scales of thin regions, such as thin films between nearly touching drops and thin threads formed during the interface pinch-off, are usually several orders of magnitude smaller than the size of the drops. In this paper, a number of extra length criteria for adaptive meshes are developed and implemented in the moving mesh interface tracking method to solve these multiple-length-scale problems with high fidelity. A nominal length scale based on the solutions of Laplace's equations with the unit normal vectors of surfaces as the boundary conditions is proposed for the adaptive mesh refinement in the thin regions. For almost flat interfaces/boundaries which are near to the thin regions, the averaged length of the interior edges sharing the two nodes with the boundary edge is introduced for the mesh adaptation. The averaged length of the interfacial edges is used for the interior elements near the interfaces but outside of the thin regions. For the interior mesh away from the interfaces/boundaries, different averaged length scales based on the initial mesh are employed for the adaptive mesh refining and coarsening. Numerous cases are simulated to demonstrate the capability of the proposed schemes in handling multiple length scales, which include the relaxation and necking of an elongated droplet, droplet-droplet head-on approaching, droplet-wall interactions, and a droplet pair in a shear flow. The smallest length resolved for the thin regions is three orders of magnitude smaller than the largest characteristic length of the problem.
机译:在多相流中,薄区域的长度尺度(例如,几乎接触的液滴之间的薄膜和在界面夹断过程中形成的细线)通常比液滴的大小小几个数量级。在本文中,为移动网格界面跟踪方法开发并实现了许多用于自适应网格的额外长度准则,以高保真度地解决这些多长度尺度问题。提出了基于拉普拉斯方程解的标称长度尺度,以表面的单位法向矢量为边界条件,用于薄区域中的自适应网格细化。对于靠近薄区域的几乎平坦的界面/边界,引入两个与边界边缘共享节点的内部边缘的平均长度以进行网格自适应。界面边缘的平均长度用于界面附近但在薄区域之外的内部元素。对于远离界面/边界的内部网格,基于初始网格的不同平均长度尺度用于自适应网格的细化和粗化。模拟了许多情况,以证明所提出的方案在处理多个长度尺度时的能力,其中包括伸长的液滴的松弛和颈缩,液滴与液滴的正向接近,液滴与壁的相互作用以及剪切流中的液滴对。 。为薄区域解决的最小长度比问题的最大特征长度小三个数量级。

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