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首页> 外文期刊>Physical review, E >Numerical simulations of vesicle and bubble dynamics in two-dimensional four-roll mill flows
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Numerical simulations of vesicle and bubble dynamics in two-dimensional four-roll mill flows

机译:二维四辊轧机流动中囊泡和泡沫动力学的数值模拟

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摘要

We use a computational technique based on the immersed boundary method to construct a four-roll mill device with which we can generate a broad spectrum of flow types from an extensional flow to a rotational one. We put a vesicle or a bubble in the constructed four-roll mill device to investigate their interaction with the surrounding fluid. The vesicle dynamics are determined by its bending rigidity, inextensibility, and hydrodynamical force, whereas the bubble dynamics is governed by the surface tension and the hydrodynamic interaction. Depending on the type of the flow, these suspended objects go through either a tank-treading motion or a tumbling motion. We validate our numerical method by a convergence study and discuss the transition between tank-treading and tumbling motions for the vesicles and bubbles.
机译:我们使用基于浸没边界法的计算技术来构造四辊轧机装置,其中我们可以从扩张流中产生广泛的流量类型到旋转。 我们将构造的四辊轧机装置中的囊泡或气泡放入,以研究它们与周围流体的相互作用。 囊泡动力学由其弯曲刚性,不易介的性和流动力决定,而气泡动力学由表面张力和流体动力学相互作用管辖。 根据流量的类型,这些悬挂物体通过坦克踩踏运动或翻滚运动进行。 我们通过收敛研究验证了我们的数值方法,并讨论了储罐与囊泡和泡沫的滚动运动之间的过渡。

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