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Hybrid model of lattice Boltzmann and CLSVOF methods for immiscible two-fluid flow

机译:不混溶二流体流动的格子Boltzmann和CLSVOF方法混合模型

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For the development of two-fluid flow simulation with simple and high phase volume conservation, a hybrid model of lattice Boltzmann method (LBM) and coupled level set volume of fluid (CLSVOF) method is proposed. It is confirmed that finite-difference-based CLSVOF is compatible with LBM which shows similar behaviour to those by other simulation methods, and the weakly-compressibility of LBM induces the loss of phase volume. To reduce this volume error, the density distribution correction treatment is implemented in the system. This improved model is validated in cases of immiscible two-fluid flow; an oscillating droplet, a sessile droplet on various wettability surfaces, a droplet flowing through a porous medium, and T-shape channel flow. It is found that incompressible flow fields are well-represented by our improved model. For the case where the compressibility affects largely on the flow, the tendency of the flow is depicted better by unimproved model.
机译:为了发展具有简单和高相体积守恒的双流体流动模拟,提出了格子玻尔兹曼法(LBM)和流体耦合液位设定体积(CLSVOF)方法的混合模型。可以确定的是,基于有限差分的CLSVOF与LBM兼容,后者表现出与其他模拟方法相似的行为,并且LBM的弱可压缩性导致相体积的损失。为了减小该体积误差,在系统中实施了密度分布校正处理。在不混溶的二流体流动的情况下,可以验证这种改进的模型。振荡液滴,在各种润湿性表面上的无柄液滴,流过多孔介质的液滴以及T形通道流。发现我们的改进模型很好地表示了不可压缩的流场。对于可压缩性在很大程度上影响流动的情况,通过改进模型可以更好地描述流动趋势。

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