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Numerical simulation of steady and unsteady asymmetric vortical flowThe unsteady, compressible, thin-layer, Navier-Stokes (NS) equations are solved to simulate steady and unsteady, asymmetric, vortical laminar flow around cones at high incidences and supersonic Mach numbers. The equations are solved by using an implicit, upwind, flux-difference splitting (FDS), finite-volume scheme. The locally conical flow assumption is used and the solutions are obtained by forcing the conserved components of the flowfield vector to be equal at two axial stations located at 0.95 and 1.0. Computational examples cover steady and unsteady asymmetric flows around a circular cone and its control using side strakes. The unsteady asymmetric flow solution around the circular cone has also been validated using the upwind, flux-vector splitting (FVS) scheme with the thin-layer NS equations and the upwind FDS with the full NS equations. The results are in excellent agreement with each other. Unsteady asymmetric flows are also presented for elliptic- and diamond-section cones, which model asymmetric vortex shedding around round- and sharp-edged delta winds.
Document ID
19930005502
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Kandil, Osama A.
(Old Dominion Univ. Norfolk, VA., United States)
Wong, Tin-Chee
(Old Dominion Univ. Norfolk, VA., United States)
Liu, C. H.
(NASA Langley Research Center Hampton, VA, United States)
Date Acquired
September 6, 2013
Publication Date
November 1, 1992
Publication Information
Publication: Old Dominion Univ., Analysis and Control of Asymmetric Vortex Flows and Supersonic Vortex Breakdown
ISSN: 0889-9746
Subject Category
Fluid Mechanics And Heat Transfer
Report/Patent Number
ISSN: 0889-9746
Accession Number
93N14691
Funding Number(s)
CONTRACT_GRANT: NAG1-994
CONTRACT_GRANT: NAS1-18584
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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