A combined octree-advancing front method for tetrahedra and anisotropic surface meshes
Harlan McMorris, Y. Kallinderis · 14th Applied Aerodynamics Conference · 1996
A more automatic method for generation of tetrahedra and directional surface meshes are the two developments presented in this paper. Unstructured grids are generated for complex 3-D geometries including multi-body domains. A combined octree-advancing front method is presented for the generation of the unstructured surface mesh as well as the tetrahedral volume mesh. The unique feature of this generator is that a special octree provides the local length scales of the mesh, which can vary significantly. This octree is automatically created and eliminates the need for a background mesh to determine the grid-spacing and stretching parameters. The grid generator is robust, geometry independent, and requires minimal user interaction. The technique is also presented for the generation of anisotropic surface meshes that result in a significant reduction in the number of triangular faces. Automatic local remeshing is also employed to improve quality of the tetrahedral mesh. The geometry indepe...