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Simulation of surface-tension-driven interfacial flow with smoothed particle hydrodynamics method

机译:表面张力驱动的界面流动的平滑粒子流体动力学方法模拟

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摘要

The method for simulation of surface-tension-driven interfacial flow with smoothed particle hydrodynamics is developed. The calculation of surface tension force is based on the interface reconstruction. The boundary particles for each fluid are detected dynamically. The position of the interface particles are specified in the middle of the boundary particles of each fluid. According to the positions of the interface particles, the interface can be reconstructed. The normal vector and curvature of the interface can be obtained. Then the surface tension force is calculated according to the reconstructed interface. Finally the surface tension force is transferred to the SPH particles near the interface. The accuracy and efficiency of the developed method are investigated. Drop deformation in shear flow, oscillation of square drop, head-on binary collision, and off-center binary collision are simulated. The developed method can be applied to the simulation of surface-tension-driven interfacial flow with high density ratio of up to 797.88 and high viscosity ratio of up to 55.56.
机译:提出了利用表面光滑流体动力学模拟表面张力驱动界面流动的方法。表面张力的计算基于界面重建。动态检测每种流体的边界粒子。界面粒子的位置在每种流体的边界粒子的中间指定。根据界面粒子的位置,可以重构界面。可以获得界面的法线向量和曲率。然后根据重建的界面计算表面张力。最终,表面张力转移到界面附近的SPH颗粒上。研究了所开发方法的准确性和效率。模拟了剪切流中的液滴变形,方形液滴的振荡,正面二进制碰撞和偏心二进制碰撞。所开发的方法可以应用于表面张力驱动的界面流动的模拟,高密度比可达797.88,高粘度比可达55.56。

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