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首页> 外文期刊>International Journal for Numerical Methods in Fluids >Simulation of liquid sloshing in curved-wall containers with arbitrary Lagrangian-Eulerian method
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Simulation of liquid sloshing in curved-wall containers with arbitrary Lagrangian-Eulerian method

机译:用任意拉格朗日-欧拉方法模拟弯壁容器中的液体晃动

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摘要

There are many challenges in the numerical simulation of liquid sloshing in horizontal cylinders and spherical containers using the finite element method of arbitrary Lagrangian-Eulerian (ALE) formulation: tracking the motion of the free surface with the contact points, defining the mesh velocity on the curved wall boundary and updating the computational mesh. In order to keep the contact points slipping along the curved side wall, the shape vector in each time advancement is defined to modify the kinematical boundary conditions on the free Surface. A special function is introduced to automatically smooth the nodal velocities on the curved wall boundary based on the liquid nodal velocities. The elliptic partial differential equation with Dirichlet boundary conditions can directly rezone the inner nodal velocities in more than a single freedom. The incremental fractional step method is introduced to solve the finite element liquid equations. The numerical results that stemmed from the algorithm show good agreement with experimental phenomena, which demonstrates that the ALE method provides an efficient computing scheme in moving curved wall boundaries. This method can be extended to 3D cases by improving the technique to compute the shape vector. Copyright (C) 2007 John Wiley & Sons, Ltd.
机译:使用任意Lagrangian-Eulerian(ALE)公式的有限元方法在水平圆柱体和球形容器中液体晃荡的数值模拟中存在许多挑战:跟踪带有接触点的自由表面的运动,定义物体表面的网格速度弯曲的墙边界并更新计算网格。为了使接触点沿着弯曲的侧壁滑动,每次前进的形状矢量都被定义为修改自由曲面上的运动学边界条件。引入了一种特殊功能,可根据液体节点速度自动平滑弯曲壁边界上的节点速度。具有Dirichlet边界条件的椭圆偏微分方程可以在多个自由范围内直接重新划分内部节点速度。引入增量分数步法求解有限元液体方程。该算法的数值结果与实验现象吻合良好,表明ALE方法为移动弧形墙边界提供了一种有效的计算方案。通过改进计算形状矢量的技术,该方法可以扩展到3D情况。版权所有(C)2007 John Wiley&Sons,Ltd.

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