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A Level Set method for capturing interface deformation in immiscible stratified fluids

机译:捕获不混溶分层流体界面变形的水平集方法

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The interface behavior between two stratified fluids showing a large difference in viscosity was investigated numerically. A three-dimensional numerical method for the simulation of the deformation of the interface in a stirred vessel is presented. In such a systems, the interface is distorted by hydrodynamic stresses and pressure changes. Different regimens of agitation were employed to explore the response of the interface, where the boundary between them is preserved and break up is avoided. The numerical scheme presented explicitly solves the Navier-Stokes equations for an incompressible fluid whilst the convection-diffusion part is treated through a Level-Set method along a moving and deforming interface. The spatial discretization was carried out by implementing a Runge-Kutta method in a second order scheme, along as a Weighted Essentially Non-Oscillatory approach. In addition, surface tension effects were included to observe its influence on the interface response. It was found that due the effect of inertia the interface is reshaped towards the vertical direction, in this process the interface experiences high-pressure gradients, which drag the interface in the upward direction. The numerical methodology was validated by comparison of simulations and experimental measurements of an interface deforming at two low Reynolds number. The results shown that the algorithm is able to resolve accurately the detailed features of the distorted fluid interfaces.
机译:数值研究了显示出较大粘度差异的两种分层流体之间的界面行为。提出了一种模拟搅拌容器中界面变形的三维数值方法。在这样的系统中,界面因流体动力应力和压力变化而变形。采用了不同的搅拌方式来探索界面的反应,其中界面之间的边界得以保留,避免了破裂。提出的数值方案明确地解决了不可压缩流体的Navier-Stokes方程,而对流扩散部分则通过沿着移动和变形界面的Level-Set方法进行处理。通过在二阶方案中实施Runge-Kutta方法以及加权基本非振荡方法来执行空间离散化。另外,包括表面张力效应以观察其对界面响应的影响。已经发现,由于惯性的作用,界面朝着垂直方向重塑,在该过程中,界面经历高压梯度,该高压梯度将界面向上拖动。通过比较在两个低雷诺数下的界面变形的仿真和实验测量结果,验证了数值方法的有效性。结果表明,该算法能够准确解析出变形的流体界面的详细特征。

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