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An integral equation method for closely interacting surfactant-covered droplets in wall-confined Stokes flow

机译:一种整体方程方法,用于密切地互动覆盖墙体覆盖的滴漏流动

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摘要

A highly accurate method for simulating surfactant-covered droplets in two-dimensional Stokes flow with solid boundaries is presented. The method handles both periodic channel flows of arbitrary shape and stationary solid constrictions. A boundary integral method together with a special quadrature scheme is applied to solve the Stokes equations to high accuracy, also for closely interacting droplets. The problem is considered in a periodic setting and Ewald decompositions for the Stokeslet and stresslet are derived. Computations are accelerated using the spectral Ewald method. The time evolution is handled with a fourth-order, adaptive, implicit-explicit time-stepping scheme. The numerical method is tested through several convergence studies and other challenging examples and is shown to handle drops in close proximity both to other drops and solid objects to high accuracy.
机译:提出了一种高准确的方法,用于模拟具有固体边界的二维斯托克斯流中的表面活性剂覆盖液滴。 该方法处理任意形状和静止实体收缩的周期性通道流。 应用与特殊正交方案一起的边界积分方法来解决方程,以高精度,也用于密切地相互作用。 在定期设置中考虑问题,并且导出了STOKESLET和应力的eWALD分解。 使用光谱eWALD方法加速计算。 时间进化由四阶,自适应,隐式显式时间步进方案处理。 通过几种收敛研究和其他具有挑战性实施例测试数值方法,并且示出了以高精度地处理到其他液滴和固体物体的近距离接近的下降。

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