首页> 外文期刊>Numerical Heat Transfer, Part B. Fundamentals: An International Journal of Computation and Methodology >An interface-tracking control-volume finite-element method for melting and solidification problems - Part I: Formulation
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An interface-tracking control-volume finite-element method for melting and solidification problems - Part I: Formulation

机译:熔融和凝固问题的界面跟踪控制量有限元方法-第一部分:配方

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摘要

An interface-tracking method is presented to solve two-dimensional convection-dominated melting and solidification problems in enclosures of arbitrarily geometry. The control-volume finite-element method (CVFEM) is applied to moving-boundary problems using an adaptive moving-grid model based on unstructured triangular grids. At every sampling instant, the liquid-solid interface is explicitly resolved by the numerical grid. A suitable chosen mesh velocity is introduced directly into the governing equations minimizing grid deformation in the vicinity of thp moving interface. Additionally, the implementation of local grid adaption algorithms (refinement, coarsening, relaxation) prevents undesirable changes of mesh resolution due to the moving interfaces. Thus, even in problems involving large-scale interface motion or boundary deformation, a continuous high-quality grid can be preserved. Furthermore, the adaptive procedure is able to produce highly graded meshes that can be "online" locally adapted to react on changing physics in Be simulation of an unsteady, process. Numerous test calculations for verification of the proposed method are presented in part II. [References: 43]
机译:提出了一种界面跟踪方法,以解决任意几何形状的壳体中二维对流为主的熔化和凝固问题。使用基于非结构化三角网格的自适应移动网格模型,将控制量有限元方法(CVFEM)应用于移动边界问题。在每个采样时刻,液固界面都由数字网格明确解析。将适当选择的网格速度直接引入到控制方程式中,以最小化thp移动界面附近的网格变形。此外,局部网格自适应算法(细化,粗化,松弛)的实现可防止由于移动的界面而引起的网格分辨率的不期望的变化。因此,即使在涉及大规模界面运动或边界变形的问题中,也可以保留连续的高质量网格。此外,自适应过程能够生成高度分级的网格,这些网格可以局部地“在线”适应在非平稳过程的模拟中对变化的物理反应。第二部分介绍了许多用于验证所提出方法的测试计算。 [参考:43]

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