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Modeling of Performance of Single Elastic Capsule in Time-Dependent Two-Dimensional MicroChannel Flow

机译:单弹性胶囊在时间依赖性二维微通道流动中的性能建模

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The mechanical behavior of capsule in microscale flow is fundamentally important in physiology, pharmaceutical or agricultural industries, fluid mechanics and physics. In the present paper, the performance of two-dimensional capsule in time-dependent microchannel flow is investigated by a numerical simulation method, which combines the finite volume method for solving the fluid problem with the front tracking technique for capturing and tracking the capsule membrane. Initially circular capsule is considered in the simulations, and the capsule is modeled as liquid medium enclosed by a thin membrane, for which linear elastic properties are taken into consideration. The membrane mechanics is adopted to calculate membrane-fluid interaction, based on which the solution of fluid problem is obtained. The capsule membrane is advected explicitly according to fluid velocity results. Results of capsule position, capsule moving velocity, capsule shape, velocity field of fluid inside and outside the membrane can be obtained from the numerical simulations. Based on these results, the effects of time-dependent background fluid on capsule behavior are studied.
机译:微观流动中胶囊的力学行为在生理学,制药或农业产业,流体力学和物理学中基本重要。在本文中,通过数值模拟方法研究了二维胶囊在时间依赖的微通道流动中的性能,该数值模拟方法研究了用于求解流体问题的有限体积方法,以便捕获和跟踪胶囊膜的前跟踪技术。最初在模拟中考虑圆形胶囊,并且胶囊被建模为由薄膜包围的液体介质,考虑到线性弹性性能。采用膜力学来计算膜流体相互作用,基于该膜流体相互作用,基于该膜流体相互作用,获得流体问题的溶液。根据流体速度结果明确地意识到胶囊膜。胶囊位置,胶囊移动速度,胶囊形状,膜内外流体的速度场可以从数值模拟获得。基于这些结果,研究了时间依赖背景流体对胶囊行为的影响。

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