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Adaptive hybrid prismatic-tetrahedral grids for viscous flowsThe paper presents generation of adaptive hybrid prismatic/tetrahedral grids for complex 3-D geometries including multi-body domains. The prisms cover the region close to each body's surface, while tetrahedra are created elsewhere. Two developments are presented for hybrid grid generation around complex 3-D geometries. The first is a new octree/advancing front type of method for generation of the tetrahedra of the hybrid mesh. The main feature of the present advancing front tetrahedra generator that is different from previous such methods is that it does not require the creation of a background mesh by the user for the determination of the grid-spacing and stretching parameters. These are determined via an automatically generated octree. The second development is an Automatic Receding Method (ARM) for treating the narrow gaps in between different bodies in a multiply-connected domain. This method is applied to a two-element wing case. A hybrid grid adaptation scheme that employs both h-refinement and redistribution strategies is developed to provide optimum meshes for viscous flow computations. Grid refinement is a dual adaptation scheme that couples division of tetrahedra, as well as 2-D directional division of prisms.
Document ID
19950022323
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Kallinderis, Yannis
(Texas Univ. Austin, TX, United States)
Khawaja, Aly
(Texas Univ. Austin, TX, United States)
Mcmorris, Harlan
(Texas Univ. Austin, TX, United States)
Date Acquired
September 6, 2013
Publication Date
March 1, 1995
Publication Information
Publication: NASA. Lewis Research Center, Surface Modeling, Grid Generation, and Related Issues in Computational Fluid Dynamic (CFD) Solutions
Subject Category
Fluid Mechanics And Heat Transfer
Accession Number
95N28744
Funding Number(s)
CONTRACT_GRANT: NSF ASC-93-57677
CONTRACT_GRANT: NAG1-1459
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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