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Starting vortex, separation bubbles and stall - A numerical study of laminar unsteady flow around an airfoilThe stalling characteristics of an airfoil in a laminar viscous incompressible fluid are investigated. The governing equations in terms of the vorticity and stream function are solved using an implicit finite-difference scheme and point successive relaxation procedure. The development of the impulsively started flow, the initial generation of circulation, and the behavior of the forces at large times are studied. Following the impulsive start, the lift is at first very large and then it rapidly drops. The subsequent growth of circulation and lift is associated with the starting vortex. After incipient separation, the lift increases owing to enlargement of the separation bubble and intensification of the flow rotation in it. The extension of this bubble beyond the trailing edge causes it to rupture and brings about the stalling characteristics of the airfoil. Subsequently, new bubbles are formed near the upper surface of the airfoil and are swept away. The behavior of the lift acting on the airfoil is explained in terms of the strength and sense of these bubbles.
Document ID
19750042140
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Mehta, U. B.
(Illinois Institute of Technology, Chicago, Ill.; NASA, Ames Research Center Computational Fluid Dynamics Branch, Moffett Field, Calif., United States)
Lavan, Z.
(Illinois Institute of Technology Chicago, Ill., United States)
Date Acquired
August 8, 2013
Publication Date
January 28, 1975
Publication Information
Publication: Journal of Fluid Mechanics
Volume: 67
Subject Category
Aerodynamics
Accession Number
75A26212
Funding Number(s)
PROJECT: PROJECT THEMIS
OTHER: F44620-69-C-0022
Distribution Limits
Public
Copyright
Other

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