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Adaptively Refined Euler and Navier-Stokes Solutions with a Cartesian-Cell Based SchemeA Cartesian-cell based scheme with adaptive mesh refinement for solving the Euler and Navier-Stokes equations in two dimensions has been developed and tested. Grids about geometrically complicated bodies were generated automatically, by recursive subdivision of a single Cartesian cell encompassing the entire flow domain. Where the resulting cells intersect bodies, N-sided 'cut' cells were created using polygon-clipping algorithms. The grid was stored in a binary-tree data structure which provided a natural means of obtaining cell-to-cell connectivity and of carrying out solution-adaptive mesh refinement. The Euler and Navier-Stokes equations were solved on the resulting grids using an upwind, finite-volume formulation. The inviscid fluxes were found in an upwinded manner using a linear reconstruction of the cell primitives, providing the input states to an approximate Riemann solver. The viscous fluxes were formed using a Green-Gauss type of reconstruction upon a co-volume surrounding the cell interface. Data at the vertices of this co-volume were found in a linearly K-exact manner, which ensured linear K-exactness of the gradients. Adaptively-refined solutions for the inviscid flow about a four-element airfoil (test case 3) were compared to theory. Laminar, adaptively-refined solutions were compared to accepted computational, experimental and theoretical results.
Document ID
19960011644
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Coirier, William J.
(NASA Lewis Research Center Cleveland, OH, United States)
Powell, Kenneth G.
(NASA Lewis Research Center Cleveland, OH, United States)
Date Acquired
September 6, 2013
Publication Date
October 1, 1995
Publication Information
Publication: NASA. Langley Research Center, ICASE(LaRC Workshop on Adaptive Grid Methods
Subject Category
Fluid Mechanics And Heat Transfer
Accession Number
96N18080
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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