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Connectivity-free front tracking method for multiphase flows with free surfaces

机译:具有自由表面的多相流的无连通性前跟踪方法

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In this study, a connectivity-free front tracking method is developed to simulate multiphase flows with free surfaces. This method is based on the point-set method which does not require any connectivities between interfacial points to represent the interface. The main advantage of the connectivity-free approach is the easiness in re-constructing the interface when large topology change occurs. It requires an indicator field to be constructed first based on the existing interface and the surface curvature and normal are then computed using the indicator field. Here, we adopt the reproducing kernel particle method (RKPM) interpolation function that provides the ability to deal with free-surface flows and the flexibility of using non-uniform meshes when local fine resolution is needed. A points regeneration scheme is developed to construct smooth interfaces and to automatically handle topology changes. The mass conservation is verified by performing a single vortex advection test. Several 2-D and 3-D numerical tests including an oscillating droplet, dam-breaking, two droplet impacting and multi-bubble merging are presented to show the accuracy and the robustness of the method.
机译:在这项研究中,开发了一种无连接的前端跟踪方法来模拟具有自由表面的多相流。此方法基于点集方法,该方法不需要界面点之间的任何连接来表示接口。无需连接的方法的主要优点是,当发生较大的拓扑更改时,易于重新构造接口。它要求首先根据现有界面构造一个指示器场,然后使用该指示器场计算表面曲率和法线。在这里,我们采用了再生核粒子方法(RKPM)内插函数,该函数提供了处理自由表面流的能力以及在需要局部精细分辨率时使用非均匀网格的灵活性。开发了一种点再生方案来构造平滑的接口并自动处理拓扑更改。通过执行单个涡流对流测试来验证质量守恒。提出了几种2-D和3-D数值测试,包括振荡液滴,溃坝,两个液滴撞击和多气泡合并,以显示该方法的准确性和鲁棒性。

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