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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Unstructured Finite Elements and Dynamic Meshing for Explicit Phase Tracking in Multiphase Problems

机译:APS-流体动力学APS部门第70届年会-事件-非结构化有限元和动态网格划分,用于多相问题中的显式相位跟踪

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Multi-phase processes involving phase change at interfaces, such as evaporation of a liquid or combustion of a solid, represent an interesting class of problems with varied applications. Large density ratio across phases, discontinuous fields at the interface and rapidly evolving geometries are some of the inherent challenges which influence the numerical modeling of multi-phase phase change problems. In this work, a mathematically consistent and robust computational approach to address these issues is presented. We use stabilized finite element methods on mixed topology unstructured grids for solving the compressible Navier-Stokes equations. Appropriate jump conditions derived from conservations laws across the interface are handled by using discontinuous interpolations, while the continuity of temperature and tangential velocity is enforced using a penalty parameter. The arbitrary Lagrangian-Eulerian (ALE) technique is utilized to explicitly track the interface motion. Mesh at the interface is constrained to move with the interface while elsewhere it is moved using the linear elasticity analogy. Repositioning is applied to the layered mesh that maintains its structure and normal resolution. In addition, mesh modification is used to preserve the quality of the volumetric mesh.
机译:涉及界面相变的多相过程,例如液体的蒸发或固体的燃烧,代表了各种应用中有趣的问题。相间的大密度比,界面处的不连续场以及几何形状的迅速发展是影响多相相变问题数值建模的固有挑战。在这项工作中,提出了一种数学上一致且鲁棒的计算方法来解决这些问题。我们在混合拓扑非结构化网格上使用稳定的有限元方法来求解可压缩的Navier-Stokes方程。通过使用不连续插值来处理从守恒律在界面上得出的适当跳跃条件,而温度和切线速度的连续性则使用惩罚参数来实现。任意拉格朗日-欧拉(ALE)技术用于显式跟踪界面运动。使用线性弹性类比,限制界面处的网格与界面一起移动,而在其他位置处将其移动。重新定位将应用于保持其结构和法向分辨率的分层网格。另外,网格修改用于保留体积网格的质量。

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