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Improving the staircase approximation for wettability implementation of phase-field model: Part1-Static contact angle

机译:改进阶梯场模型的润湿性实现的阶梯近似:第1件静态接触角

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摘要

In this study, two schemes to treat fluid-solid interaction on complex boundaries are proposed and solved in the framework of lattice Boltzmann method. The schemes are applied on the phase-field-based wettability implementation methods for binary and ternary fluids to simulate static contact angle on a circular surface generated by the staircase approximation. For the binary system, surface-energy and geometric wetting conditions are adopted, while for the ternary system, surface-energy model with two discretization schemes resulting in explicit and implicit wetting conditions are developed and examined. It is proven that the implicit wetting condition approximating the value of order parameters on the boundary node, as the average of their value between the neighboring fluid node and solid node, enhances the accuracy of predicted contact angles. For modeling of contact angle on the circular surface and identifying the direction of normal vectors required for incorporating wetting condition, the gradient of fluid-solid field is calculated. Two methods namely, round-off and interpolation describing how the information of neighboring nodes given the direction of normal vector on the boundary nodes should be used, are discussed. It is illustrated that results of the interpolation method exhibit a good agreement with the analytical solution as opposed to the round-off when tested in the case of static contact angle on a circular surface for both binary and ternary systems. Finally, it is shown incorporating different wetting conditions with the appropriate way of handling normal vectors and in combination with the conservative phase-field model can model static contact angle at high-density ratios for both binary and ternary fluids with good accuracy.
机译:在该研究中,提出了两种用于治疗复杂边界上的流体固体相互作用的方案,并在格子Boltzmann方法的框架中解决。该方案应用于基于基于阶段和三元流体的基于阶段的润湿性实现方法,以在楼梯近似产生的圆形表面上模拟静态接触角。对于二元系统,采用表面能和几何润湿条件,而对于三元系统,开发并检查了具有显式和隐式润湿条件的离散化方案的表面能模型。据证正,隐式润湿条件近似于边界节点上的订单参数值,作为相邻流体节点和实体节点之间的值的平均值,增强了预测接触角的精度。为了对圆形表面上的接触角的建模并识别夹持润湿条件所需的正常载体的方向,计算流体固体场的梯度。讨论了两个方法,描述了应使用鉴于边界节点上的正常矢量方向的相邻节点的信息如何使用。示出了插值方法的结果表现出与分析液的良好一致性,而当在二元和三元系统的圆形表面上的圆形表面上进行静态接触角时,与圆截面相反。最后,示出了用适当的方式处理不同的润湿条件,并与保守的相场模型结合使用良好精度的二元和三元流体以高密度比的静态接触角模拟静态接触角。

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