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首页> 外文期刊>International journal of applied mechanics >Numerical simulation of 2d liquid sloshing
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Numerical simulation of 2d liquid sloshing

机译:二维液体晃动的数值模拟

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摘要

In this paper, we present an extended ghost fluid method (GFM) for computations of liquid sloshing in incompressible multifluids consisting of inviscid and viscous regions. That is, the sloshing interface between inviscid and viscous fluids is tracked by the zero contour of a level set function and the appropriate sloshing interface conditions are captured by defining ghost fluids that have the velocities and pressure of the real fluid at each point while fixing the density and the kinematic viscosity of the other fluid. Meanwhile, a second order single-fluid solver, the central-weighted-essentially- nonoscillatory(CWENO)-type central-upwind scheme, is developed from our previous works. The high resolution and the nonoscillatory quality of the scheme can be verified by solving several numerical experiments. Nonlinear sloshing inside a pitching partially filled rectangular tank with/without baffles has been investigated.
机译:在本文中,我们提出了一种扩展的幻影流体方法(GFM),用于计算由粘性和粘性区域组成的不可压缩多流体中的液体晃动。也就是说,通过水平设置函数的零轮廓跟踪不粘流体和粘性流体之间的晃动界面,并通过定义在固定点的同时具有每个点的真实流体的速度和压力的幻影流体来捕获适当的晃动界面条件。密度和其他流体的运动粘度。同时,根据我们以前的工作,开发了二阶单流体求解器,即中央加权基本非振荡型(CWENO)型中央迎风方案。通过解决几个数值实验,可以验证该方案的高分辨率和非振荡质量。已经研究了带/不带挡板的,倾斜的,部分填充的矩形水箱内部的非线性晃荡。

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