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Numerical study of delta wing leading edge blowingSpanwise and tangential leading edge blowing as a means of controlling the position and strength of the leading edge vortices are studied by numerical solution of the three-dimensional Navier-Stokes equations. The leading edge jet is simulated by defining a permeable boundary, corresponding to the jet slot, where suitable boundary conditions are implemented. Numerical results are shown to compare favorably with experimental measurements. It is found that the use of spanwise leading edge blowing at moderate angle of attack magnifies the size and strength of the leading edge vortices, and moves the vortex cores outboard and upward. The increase in lift primarily comes from the greater nonlinear vortex lift. However, spanwise blowing causes earlier vortex breakdown, thus decreasing the stall angle. The effects of tangential blowing at low to moderate angles of attack tend to reduce the pressure peaks associated with leading edge vortices and to increase the suction peak around the leading edge, so that the integrated value of the surface pressure remains about the same. Tangential leading edge blowing in post-stall conditions is shown to re-establish vortical flow and delay vortex bursting, thus increasing C sub L sub max and stall angle.
Document ID
19880016951
Acquisition Source
Legacy CDMS
Document Type
Contractor Report (CR)
Authors
Yeh, David
(Stanford Univ. CA, United States)
Tavella, Domingo
(Stanford Univ. CA, United States)
Roberts, Leonard
(Stanford Univ. CA, United States)
Date Acquired
September 5, 2013
Publication Date
July 1, 1988
Subject Category
Aerodynamics
Report/Patent Number
NAS 1.26:183101
JIAA-TR-86
NASA-CR-183101
Report Number: NAS 1.26:183101
Report Number: JIAA-TR-86
Report Number: NASA-CR-183101
Accession Number
88N26335
Funding Number(s)
CONTRACT_GRANT: NCC2-341
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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