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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - 3D numerical simulations of oblique droplet impact onto a deep liquid pool

机译:APS-APS流体动力学分部第70届年会-事件-斜滴撞击深液池的3D数值模拟

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摘要

We study the fluid dynamics of three-dimensional oblique droplet impact, which results in phenomena that include splashing and cavity formation. An adaptive, unstructured mesh modelling framework is employed here, which can modify and adapt unstructured meshes to better represent the underlying physics of droplet dynamics, and reduce computational effort without sacrificing accuracy. The numerical framework consists of a mixed control-volume and finite-element formulation, a volume-of-fluid-type method for the interface-capturing based on a compressive control-volume advection method. The framework also features second-order finite-element methods, and a force-balanced algorithm for the surface tension implementation, minimising the spurious velocities often found in many simulations involving capillary-driven flows. The numerical results generated using this framework are compared with high-speed images of the interfacial shapes of the deformed droplet, and the cavity formed upon impact, yielding good agreement.
机译:我们研究了三维倾斜液滴撞击的流体动力学,该流体动力学导致了包括飞溅和空腔形成的现象。此处采用了自适应非结构​​化网格建模框架,该框架可以修改和调整非结构化网格以更好地表示液滴动力学的基本物理原理,并在不牺牲准确性的情况下减少计算量。数值框架由混合控制体积和有限元公式,基于压缩控制体积平流方法的界面捕获的流体体积类型方法组成。该框架还具有二阶有限元方法和用于表面张力实现的力平衡算法,可将在涉及毛细管驱动流的许多模拟中经常发现的杂散速度降至最低。使用此框架生成的数值结果与变形液滴的界面形状的高速图像进行比较,并且在撞击后形成空腔,从而产生良好的一致性。

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