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An adaptive unstructured grid method by grid subdivision, local remeshing, and grid movement
Author(s) -
Shahyar Pirzadeh
Publication year - 1999
Publication title -
14th computational fluid dynamics conference
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.1999-3255
Subject(s) - subdivision , grid , computer science , unstructured grid , mesh generation , movement (music) , computational science , mathematics , geometry , finite element method , engineering , civil engineering , structural engineering , philosophy , aesthetics
An unstructured grid adaptation technique has been developed and successfully applied to several three dimensional inviscid flow test cases. The approach is based on a combination of grid subdivision, local remeshing, and grid movement. For solution adaptive grids, the surface triangulation is locally refined by grid subdivision, and the tetrahedral grid in the field is partially remeshed at locations of dominant flow features. A grid redistribution strategy is employed for geometric adaptation of volume grids to moving or deforming surfaces. The method is automatic and fast and is designed for modular coupling with different solvers. Several steady state test cases with different inviscid flow features were tested for grid/solution adaptation. In all cases, the dominant flow features, such as shocks and vortices, were accurately and efficiently predicted with the present approach. A new and robust method of moving tetrahedral "viscous" grids is also presented and demonstrated.

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