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FRONT-TRACKING SIMULATION OF A LIQUID CAPSULE ENCLOSED BY AN ELASTIC MEMBRANE

机译:弹性膜包围的液体胶囊的正面跟踪模拟

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Dynamics of a liquid capsule enclosed by an elastic membrane in a shear flow is investigated using front tracking finite difference method. We compute deformation, orientation and tank treading, as functions of forcing (capillary number) and viscosity ratio for two different membrane constitutive equations-Neo-Hookean and Skalak. The computed results compare very well with those obtained by high-order Boundary element methods as well as small deformation perturbation analysis. The simulation shows that a drop and a capsule, even under those circumstances that result in the same Taylor deformation criterion for both, attain very different shapes. The tank-treading period even for different capillary numbers as well as capsules with different constitutive laws, is determined by the deformation and the viscosity ratio.
机译:采用前跟踪有限差分法研究了由弹性膜包围的液体胶囊的动态。我们计算变形,取向和罐踩踏,作为迫使(毛细管数)和两个不同膜本构方程的粘度比的函数 - Neo-Hookean和Skalak。计算结果与由高阶边界元件方法获得的那些相比,以及小变形扰动分析。仿真表明,即使在导致两者的相同泰勒变形标准的那些情况下,也可以降低胶囊,达到非常不同的形状。通过变形和粘度比来确定罐踩罐踩踏时期,即使是不同的毛细管数量以及具有不同本构规则的胶囊。

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