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Numerical simulation of single droplet dynamics in three-phase flows using ISPH

机译:使用ISPH的三相流中单滴动力学的数值模拟

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In this study, a new surface tension formulation for modeling incompressible, immiscible three-phase fluid flows in the context of incompressible smoothed particle hydrodynamics (ISPH) in two dimensions has been proposed. A continuum surface force model is employed to transform local surface tension force to a volumetric force while physical surface tension coefficients are expressed as the sum of phase specific surface tension coefficients, facilitating the implementation of the proposed method at triple junctions where all three phases are present. Smoothed color functions at fluid interfaces along with artificial particle displacement throughout the computational domain are combined to increase accuracy and robustness of the model. In order to illustrate the effectiveness of the proposed method, several numerical simulations have been carried out and results are compared to analytical data available in literature. Results obtained by simulations are compatible with analytical data, demonstrating that the ISPH scheme proposed here is capable of handling three-phase flows accurately.
机译:在这项研究中,提出了一种新的表面张力公式,用于在二维不可压缩平滑粒子流体动力学(ISPH)的背景下对不可压缩,不可混合的三相流体流进行建模。使用连续表面力模型将局部表面张力转换为体积力,而物理表面张力系数表示为相比表面张力系数的总和,从而有助于在存在所有三相的三重结处实施该方法。流体界面处的平滑颜色函数与整个计算域中的人工粒子位移相结合,以提高模型的准确性和鲁棒性。为了说明该方法的有效性,已经进行了一些数值模拟,并将结果与​​文献中的分析数据进行了比较。通过仿真获得的结果与分析数据兼容,表明此处提出的ISPH方案能够准确处理三相流。

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