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Simulation of droplet impact on a solid surface using the level contour reconstruction method

机译:使用水平轮廓重建方法模拟液滴对固体表面的撞击

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We simulate the three-dimensional impact of a droplet onto a solid surface using the level contour reconstruction method (LCRM). A Navier-slip dynamic contact line model is implemented in this method and contact angle hysteresis is accounted for by fixing the contact angle limits to prescribed advancing or receding angles. Computation of a distance function directly from the tracked interface enables a straightforward implementation of the contact line dynamic model in the LCRM. More general and sophisticated contact line models are readily applicable in this front tracking approach with few modifications, since complete knowledge of the geometrical information of the interface in the vicinity of the wall contact region is available. Several validation tests are performed including 2D planar droplet, 2D axisymmetric droplet, and full three-dimensional droplet splashing problems. The results show good agreement compared with existing numerical and experimental solutions.
机译:我们使用水平轮廓重建方法(LCRM)模拟液滴对固体表面的三维影响。在该方法中实现了Navier滑移动态接触线模型,并且通过将接触角限制固定为规定的前进或后退角来解决接触角滞后问题。直接从跟踪界面计算距离函数可以在LCRM中直接实现接触线动态模型。由于可以获得关于壁接触区域附近的界面的几何信息的完整知识,因此更容易将更通用,更复杂的接触线模型应用于这种正面跟踪方法,而无需进行任何修改。进行了几项验证测试,包括2D平面液滴,2D轴对称液滴和完整的三维液滴飞溅问题。与现有的数值和实验解决方案相比,结果显示出良好的一致性。

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