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Direct simulation of multiphase flows with modeling of dynamic interface contact angle

机译:具有动态接口接触角模拟的多相流的直接模拟

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摘要

We describe a modeling technique for dynamic contact angle between a phase interface and a solid wall using a generalized Navier boundary condition in the context of a front-tracking-based multiphase method. The contact line motion is determined by the generalized Navier slip boundary condition in order to eliminate the infinite shear stress at the contact line. Applying this slip boundary condition only to the interface movement with various slip ratios shows good agreement with experimental results compared to allowing full fluid slip along the solid surface. The interface slip model performs well on grid convergence tests using both the slip ratio and slip length models. A detailed energy analysis was performed to identify changes in kinetic, surface, and potential energies as well as viscous and contact line dissipation with time. A friction coefficient for contact line dissipation was obtained based on the other computed energy terms. Each energy term and the friction coefficient were compared for different grid resolutions. The effect of varying the slip ratio as well as the contact angle distribution versus contact line speed was analyzed. The behavior of drop impact on a solid wall with different advancing and receding angles was investigated. Finally, the proposed dynamic contact model was extended to three dimensions for large-scale parallel calculations. The impact of a droplet on a solid cylinder was simulated to demonstrate the capabilities of the proposing formulation on general solid structures. Widely different contact angles were tested and showed distinctive characteristic behavior clearly.
机译:在基于前跟踪的多相方法的上下文中,使用广义的Navier边界条件描述相位接口与实心壁之间的动态接触角的建模技术。接触线运动由广义的Navier Slow边界条件确定,以消除接触线处的无限剪切应力。仅对具有各种滑动比率的界面运动施加该滑动边界条件与实验结果相比,与允许沿着固体表面的完全流体滑动相比,伴随着实验结果的良好一致性。界面滑移模型使用滑移比率和滑动长度模型对网格收敛试验进行良好。进行详细的能量分析以识别动力学,表面和潜在能量的变化以及随时间的粘性和接触线路耗散。基于其他计算的能量术语获得接触线耗散的摩擦系数。将每个能量术语和摩擦系数进行比较,以不同的网格分辨率。分析了改变滑移比以及接触角分布与接触线速度的效果。研究了在具有不同推进和后退角度的固体壁上的下降撞击的行为。最后,建议的动态接触型号扩展到大规模并行计算的三个维度。模拟液滴对固体圆筒的影响,以证明在一般固体结构上提出制剂的能力。测试广泛不同的接触角,并清楚地显示出独特的特征行为。

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