Journal of Computational and Applied Mathematics2022,Vol.40720.DOI:10.1016/j.cam.2022.114094

Variable resolution Poisson-disk sampling for meshing discrete fracture networks

Krotz, Johannes Sweeney, Matthew R. Gable, Carl W. Hyman, Jeffrey D. Restrepo, Juan M.
Journal of Computational and Applied Mathematics2022,Vol.40720.DOI:10.1016/j.cam.2022.114094

Variable resolution Poisson-disk sampling for meshing discrete fracture networks

Krotz, Johannes 1Sweeney, Matthew R. 2Gable, Carl W. 2Hyman, Jeffrey D. 2Restrepo, Juan M.3
扫码查看

作者信息

  • 1. Univ Tennessee
  • 2. Alamos Natl Lab
  • 3. Oak Ridge Natl Lab
  • 折叠

Abstract

We present the near-Maximal Algorithm for Poisson-disk Sampling (nMAPS) to generate point distributions for variable resolution Delaunay triangular and tetrahedral meshes in two and three-dimensions, respectively. nMAPS consists of two principal stages. In the first stage, an initial point distribution is produced using a cell-based rejection algorithm. In the second stage, holes in the sample are detected using an efficient background grid and filled in to obtain a near-maximal covering. Extensive testing shows that nMAPS generates a variable resolution mesh in linear run time with the number of accepted points. We demonstrate nMAPS capabilities by meshing three-dimensional discrete fracture networks (DFN) and the surrounding volume. The discretized boundaries of the fractures, which are represented as planar polygons, are used as the seed of 2D-nMAPS to produce a conforming Delaunay triangulation. The combined mesh of the DFN is used as the seed for 3D-nMAPS, which produces conforming Delaunay tetrahedra surrounding the network. Under a set of conditions that naturally arise in maximal Poisson-disk samples and are satisfied by nMAPS, the two-dimensional Delaunay triangulations are guaranteed to only have well-behaved triangular faces. While nMAPS does not provide triangulation quality bounds in more than two dimensions, we found that low-quality tetrahedra in 3D are infrequent, can be readily detected and removed, and a high quality balanced mesh is produced. (C)2022 Elsevier B.V. All rights reserved.

Key words

Discrete fracture network/Maximal Poisson-disk sampling/Mesh generation/Conforming Delaunay triangulation/HYBRID MORTAR METHOD/DUAL-POROSITY MODEL/SIMULATING FLOW/SOLVING FLOW/TRANSPORT/EFFICIENT/DISCRETIZATION/TRIANGULATION/ALGORITHM

引用本文复制引用

出版年

2022
Journal of Computational and Applied Mathematics

Journal of Computational and Applied Mathematics

EISCI
ISSN:0377-0427
被引量7
参考文献量69
段落导航相关论文