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contributor authorScott Morton
contributor authorJames Forsythe
contributor authorAnthony Mitchell
contributor authorDavid Hajek
date accessioned2017-05-09T00:07:42Z
date available2017-05-09T00:07:42Z
date copyrightDecember, 2002
date issued2002
identifier issn0098-2202
identifier otherJFEGA4-27179#924_1.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/126926
description abstractAn understanding of vortical structures and vortex breakdown is essential for the development of highly maneuverable vehicles and high angle of attack flight. This is primarily due to the physical limits these phenomena impose on aircraft and missiles at extreme flight conditions. Demands for more maneuverable air vehicles have pushed the limits of current CFD methods in the high Reynolds number regime. Simulation methods must be able to accurately describe the unsteady, vortical flowfields associated with fighter aircraft at Reynolds numbers more representative of full-scale vehicles. It is the goal of this paper to demonstrate the ability of detached-eddy Simulation (DES), a hybrid Reynolds-averaged Navier-Stokes (RANS)/large-eddy Simulation (LES) method, to accurately predict vortex breakdown at Reynolds numbers above 1×106. Detailed experiments performed at Onera are used to compare simulations utilizing both RANS and DES turbulence models.
publisherThe American Society of Mechanical Engineers (ASME)
titleDetached-Eddy Simulations and Reynolds-Averaged Navier-Stokes Simulations of Delta Wing Vortical Flowfields
typeJournal Paper
journal volume124
journal issue4
journal titleJournal of Fluids Engineering
identifier doi10.1115/1.1517570
journal fristpage924
journal lastpage932
identifier eissn1528-901X
keywordsTurbulence
keywordsEddies (Fluid dynamics)
keywordsReynolds number
keywordsEngineering simulation
keywordsVortices
keywordsReynolds-averaged Navier–Stokes equations
keywordsWings AND Navier-Stokes equations
treeJournal of Fluids Engineering:;2002:;volume( 124 ):;issue: 004
contenttypeFulltext


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