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Improved method for implementing contact angle condition in simulation of liquid sloshing under microgravity

机译:微再生液体晃动模拟中实现接触角条件的改进方法

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摘要

The finite element simulation of liquid sloshing under microgravity is focused on in this paper. For this class of flows, an important issue is to implement the contact angle boundary condition appropriately. A novel method of adding infinitely small free-surface mesh just adjacent to the contact line is proposed here, which coincides with the physical definition of the contact angle. This free-surface mesh has its orientation determined according to the contact angle, and the mean curvature at the contact line can be computed using this orientation. Hence, surface tension force can be computed and incorporated as an essential boundary condition into the pressure solve. This method is convenient to be applied in three-dimensional simulations, and the use of relatively coarse meshes near the contact line is allowed. In order to validate the proposed method, several numerical simulations of flows in two-dimensional circular and three-dimensional cylindrical and spherical containers are presented, including calculation of equilibrium positions of the free surfaces, unsteady flows of liquid reorientation, and large-amplitude nonlinear liquid sloshing under lateral excitation in microgravity. Parts of the numerical results are compared with the theoretical and published experimental results.
机译:在本文中,微沉降下液体晃动的有限元仿真集中在本文中。对于这类流动,一个重要问题是适当地实施接触角边界条件。这里提出了一种新的方法,其在此提出了与接触线相邻附近的无限小的自由表面网格,这与接触角的物理定义一致。这种自由表面网格的取向根据接触角确定,并且可以使用这种方向计算接触线处的平均曲率。因此,可以计算表面张力,并作为基本边界条件结合到压力求解中。该方法可方便地应用于三维仿真,并且允许在接触线附近的相对粗糙网格的使用。为了验证所提出的方法,提出了几维圆形和三维圆柱形和球形容器中的几数量模拟,包括自由表面的平衡位置,液体重新定向的不稳定流和大幅度非线性的计算在微匍匐的横向激发下液体晃动。将数值结果的部分与理论和公开的实验结果进行比较。

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