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Vortex Generation and Wave-Vortex Interaction Over a Concave Plate with Roughness and Suction

AUTHOR Nasa, National Aeronautics and Space Adm
PUBLISHER Independently Published (10/25/2018)
PRODUCT TYPE Paperback (Paperback)

Description
The generation and amplification of vortices by surface homogeneities, both in the form of surface waviness and of wall-normal velocity, is investigated using the nonlinear parabolic stability equations. Transients and issues of algebraic growth are avoided through the use of a similarity solution as initial condition for the vortex. In the absence of curvature, the vortex decays as the square root of 1/x when flowing over streamwise aligned riblets of constant height, and grows as the square root of x when flowing over a corresponding streamwise aligned variation of blowing/suction transpiration velocity. However, in the presence of wall inhomogeneities having both streamwise and spanwise periodicity, the growth of the vortex can be much larger. In the presence of curvature, the vortex develops into a Gortler vortex. The 'direct' and 'indirect' interaction mechanisms possible in wave-vortex interaction are presented. The 'direct' interaction does not lead to strong resonance with the flow conditions investigated. The 'indirect' interaction leads to K-type transition. Bertolotti, Fabio Unspecified Center NAS1-19480; RTOP 505-90-52-01...
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ISBN-13: 9781729210192
ISBN-10: 1729210198
Binding: Paperback or Softback (Trade Paperback (Us))
Content Language: English
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Page Count: 48
Carton Quantity: 85
Product Dimensions: 8.50 x 0.10 x 11.02 inches
Weight: 0.30 pound(s)
Country of Origin: US
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Science | Space Science - General
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The generation and amplification of vortices by surface homogeneities, both in the form of surface waviness and of wall-normal velocity, is investigated using the nonlinear parabolic stability equations. Transients and issues of algebraic growth are avoided through the use of a similarity solution as initial condition for the vortex. In the absence of curvature, the vortex decays as the square root of 1/x when flowing over streamwise aligned riblets of constant height, and grows as the square root of x when flowing over a corresponding streamwise aligned variation of blowing/suction transpiration velocity. However, in the presence of wall inhomogeneities having both streamwise and spanwise periodicity, the growth of the vortex can be much larger. In the presence of curvature, the vortex develops into a Gortler vortex. The 'direct' and 'indirect' interaction mechanisms possible in wave-vortex interaction are presented. The 'direct' interaction does not lead to strong resonance with the flow conditions investigated. The 'indirect' interaction leads to K-type transition. Bertolotti, Fabio Unspecified Center NAS1-19480; RTOP 505-90-52-01...
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Paperback