Title :
3D hybrid mesh generation for complex geometry
Author :
Yamin Wang ; Yafei Zhang
Author_Institution :
Univ. Coll. London, London, UK
Abstract :
A novel hybrid mesh generation algorithm for the three-dimensional viscous flow computations is proposed firstly. The initial surface mesh is generated by the advancing front triangulator. Then the boundary layer is configured with the anisotropic prismatic elements by an advancing layer mesher. For the robustness enhancement and the improvement of the boundary layer elements quality, a series of procedures are adopted at the following several aspects: the computation and smoothing of the marching directions, adaptive adjustment the marching step size, multi-marching directions, and correct the invalid grid elements. In addition, an auto-receding method allows the generation of non-overlapping prismatic mesh even in complex geometries that contain narrow gaps and cavities. Then the mesh generation process is finalized with the far field filled with the isotropic tetrahedral elements generated by the Delaunay-type mesher and the updating of surface mesh on the symmetry plane. Finally, mesh examples and simulation results for several models are presented to demonstrate the efficiency and effectiveness of the proposed algorithm.
Keywords :
boundary layers; mesh generation; plastic flow; surface fitting; 3D hybrid mesh generation; Delaunay-type mesh; anisotropic prismatic element; autoreceding method; boundary layer; complex geometry; front triangulator; isotropic tetrahedral element; marching direction; marching step size; robustness enhancement; surface mesh; symmetry plane; three-dimensional viscous flow computations; Face; Geometry; Hybrid power systems; Mesh generation; Smoothing methods; Standards; Surface treatment; 3D; complex geometry; mesh generation;
Conference_Titel :
Intelligent Control and Information Processing (ICICIP), 2013 Fourth International Conference on
Conference_Location :
Beijing
Print_ISBN :
978-1-4673-6248-1
DOI :
10.1109/ICICIP.2013.6568178