论文标题
树突状生长的尖锐介观模型
A sharp-interface mesoscopic model for dendritic growth
论文作者
论文摘要
谷物包膜模型(GEM)描述了固化过程中树突状晶体包膜的生长。从数值上讲,通常使用接口捕获方法在固定网格上使用相位场方程进行跟踪。这样的方法将包膜描述为弥漫界面,这可能导致可能有害的数值人工制品。在这项工作中,我们提出了GEM的尖锐接口公式,以消除此类人工制品,从而可以以高精度跟踪信封。新的配方使用一种自适应网状离散方法来解决晶粒周围液体的扩散。我们使用无网格方法在散射节点上操作的能力,以准确描述界面,即信封。所提出的算法结合了参数表面的参数表面重建,无网状离散化,全局解决方案构造程序和部分差分操作员使用单元素作为基础函数。该方法在树突扩散生长的二维H-自适应溶液上得到了证明,并通过与常规的漫射界面固定网格GEM进行比较来评估。
The grain envelope model (GEM) describes the growth of envelopes of dendritic crystal grains during solidification. Numerically the growing envelopes are usually tracked using an interface capturing method employing a phase field equation on a fixed grid. Such an approach describes the envelope as a diffuse interface, which can lead to numerical artefacts that are possibly detrimental. In this work, we present a sharp-interface formulation of the GEM that eliminates such artefacts and can thus track the envelope with high accuracy. The new formulation uses an adaptive meshless discretization method to solve the diffusion in the liquid around the grains. We use the ability of the meshless method to operate on scattered nodes to accurately describe the interface, i.e., the envelope. The proposed algorithm combines parametric surface reconstruction, meshless discretization of parametric surfaces, global solution construction procedure and partial differential operator approximation using monomials as basis functions. The approach is demonstrated on a two-dimensional h-adaptive solution of diffusive growth of dendrites and assessed by comparison to a conventional diffuse-interface fixed-grid GEM.