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Elliptic surface grid generation on minimal and parmetrized surfacesAn elliptic grid generation method is presented which generates excellent boundary conforming grids in domains in 2D physical space. The method is based on the composition of an algebraic and elliptic transformation. The composite mapping obeys the familiar Poisson grid generation system with control functions specified by the algebraic transformation. New expressions are given for the control functions. Grid orthogonality at the boundary is achieved by modification of the algebraic transformation. It is shown that grid generation on a minimal surface in 3D physical space is in fact equivalent to grid generation in a domain in 2D physical space. A second elliptic grid generation method is presented which generates excellent boundary conforming grids on smooth surfaces. It is assumed that the surfaces are parametrized and that the grid only depends on the shape of the surface and is independent of the parametrization. Concerning surface modeling, it is shown that bicubic Hermite interpolation is an excellent method to generate a smooth surface which is passing through a given discrete set of control points. In contrast to bicubic spline interpolation, there is extra freedom to model the tangent and twist vectors such that spurious oscillations are prevented.
Document ID
19950022339
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Spekreijse, S. P.
(National Aerospace Lab. Amsterdam, Netherlands)
Nijhuis, G. H.
(National Aerospace Lab. Amsterdam, Netherlands)
Boerstoel, J. W.
(National Aerospace Lab. Amsterdam, Netherlands)
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
Computer Programming And Software
Accession Number
95N28760
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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