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NASA NTRS · 19920064425

A solution-adaptive mesh algorithm for dynamic/static refinement of two and three dimensional grids

Abstract

An adaptive grid algorithm has been developed in two and three dimensions that can be used dynamically with a solver or as part of a grid refinement process. The algorithm employs a transformation from the Cartesian coordinate system to a general coordinate space, which is defined as a parallelepiped in three dimensions. A weighting function, independent for each coordinate direction, is developed that will provide the desired refinement criteria in regions of high solution gradient. The adaptation is performed in the general coordinate space and the new grid locations are returned to the Cartesian space via a simple, one-step inverse mapping. The algorithm for relocation of the mesh points in the parametric space is based on the center of mass for distributed weights. Dynamic solution-adaptive results are presented for laminar flows in two and three dimensions.

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BibTeXRIS

Benson, Rusty A., Mcrae, D. S.. 1991-01-01. A solution-adaptive mesh algorithm for dynamic/static refinement of two and three dimensional grids. https://ntrs.nasa.gov/citations/19920064425

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