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Numerical solutions of the linearized Euler equations for unsteady vortical flows around lifting airfoils
Author(s) -
James Scott,
Hafiz Atassi
Publication year - 1990
Publication title -
29th aerospace sciences meeting
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.1990-694
Subject(s) - airfoil , euler equations , euler's formula , aerodynamics , mechanics , euler method , physics , navier–stokes equations , mathematics , mathematical analysis , compressibility
A linearized unsteady aerodynamic analysis is presented for unsteady, subsonic vortical flows around lifting airfoils. The analysis fully accounts for the distortion effects of the nonuniform mean flow on the imposed vortical disturbances. A frequency domain numerical scheme which implements this linearized approach is described, and numerical results are presented for a large variety of flow configurations. The results demonstrate the effects of airfoil thickness, angle of attack, camber, and Mach number on the unsteady lift and moment of airfoils subjected to periodic vortical gusts. The results show that mean flow distortion can have a very strong effect on the airfoil unsteady response, and that the effect depends strongly upon the reduced frequency, Mach number, and gust wave numbers.

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