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Graph Coloring Approach to Mesh Generation in Multiphase Media with Smooth Boundaries

机译:图着色法在具有光滑边界的多相介质中生成网格

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摘要

This paper provides a novel approach for mesh generation for materials that have distinct spatial components with a smooth boundary between them. Experimental data are used in pixel/voxel format to label elements in a generic finite element (FE) mesh of a representative volume element. The basis of this approach is a novel Potts energy formulation to allow integer optimization on the dual of the FE mesh. The Potts energy can be decomposed into two terms: the field energy/data cost and the interaction energy/smoothing cost. The field term is used to represent the likelihood of a grain label on an element based on the experimental voxel data. The interaction term encodes a prior on this labeling; in particular, it is used for smoothening the phase boundary. Energy minimization of this system leads to a multiway cut problem, which is solved using graph cuts. A multilabel energy minimization problem is formulated using a Potts form. This methodology allows capturing smooth boundaries in materials with nonequiaxed morphologies. Applications to polycrystalline microstructures and woven composites are presented. The extension to nonequiaxed morphologies is presented using the Riemannian distance measure. This procedure allows re-usability of an FE mesh by adaptively assigning pixel/voxel information to elements while preserving important features like the phase boundary surface length/area.
机译:本文提供了一种新颖的网格生成方法,可用于具有明显空间分量且材料之间具有平滑边界的材料。实验数据以像素/体素格式使用,以标记代表体积元素的通用有限元(FE)网格中的元素。这种方法的基础是新颖的Potts能量公式,可以对有限元网格的对偶进行整数优化。 Potts能量可以分解为两个术语:场能量/数据成本和交互作用能量/平滑成本。字段术语用于表示基于实验体素数据的元素上的晶粒标记的可能性。交互项在此标签上编码先验;特别是用于平滑相位边界。该系统的能量最小化导致多路切割问题,可使用图形切割解决。使用Potts形式来制定多标签能量最小化问题。这种方法可以捕获具有非等轴形态的材料中的光滑边界。介绍了在多晶微结构和机织复合材料中的应用。使用Riemannian距离量度介绍了非等轴形态的扩展。此过程通过将像素/体素信息自适应地分配给元素,同时保留重要特征(如相边界表面长度/面积),从而可以实现FE网格的重用。

著录项

  • 来源
    《AIAA Journal》 |2020年第1期|198-205|共8页
  • 作者单位

    Univ Michigan Aerosp Engn Ann Arbor MI 48109 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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