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Numerical modeling of gas-liquid-solid interactions: Gas-liquid free surfaces interacting with deformable solids

机译:气液固相互作用的数值模拟:无气液表面与可变形固体的相互作用

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A numerical framework to model and simulate gas-liquid-solid three-phase flows is proposed and implemented in this work. The overall algorithm adopts a non-boundary-fitted approach that avoids frequent mesh-updating procedures by defining independent meshes and explicit interfacial points to represent each phase. Here, we couple our existing solvers, the immersed finite element method (IFEM) and the connectivity-free front tracking (CFFT) method that model fluid-solid and gas-liquid interactions, respectively, for the three-phase models. A modified IFEM algorithm is derived for modeling fluid-solid interactions that accounts for the dynamics of the solid, while the CFFT is used here to simulate gas-liquid multi-fluid flows that uses explicit interfacial points to represent the gas-liquid interface and for its easy handling of interface topology changes. Instead of defining different levels simultaneously as used in level sets, an indicator function naturally couples the two methods together to represent and track each of the three phases. Several 2-D and 3-D testing cases are performed to show the robustness and capability of the coupled numerical framework in dealing with complex three-phase problems, in particular free surfaces interacting with deformable solids. (C) 2014 Elsevier B.V. All rights reserved.
机译:在这项工作中,提出并实现了一个用于模拟和模拟气液固三相流的数值框架。总体算法采用非边界拟合方法,该方法通过定义独立的网格和明确的界面点来表示每个阶段,从而避免了频繁的网格更新过程。在这里,我们将现有的求解器,沉浸式有限元方法(IFEM)和无连通性前沿跟踪(CFFT)方法耦合在一起,分别为三相模型建模。推导了一种改进的IFEM算法,用于建模考虑固体动力学的流固耦合,而CFFT此处用于模拟使用显式界面点表示气液界面的气液多流体流,并且它易于处理接口拓扑更改。指标函数可以自然地将两种方法结合在一起以表示和跟踪三个阶段中的每个阶段,而不是像在级别集中同时定义不同的级别那样。进行了几个2-D和3-D测试案例,以显示耦合数值框架在处理复杂的三相问题(特别是自由表面与可变形固体相互作用)时的鲁棒性和功能。 (C)2014 Elsevier B.V.保留所有权利。

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