Experiments with a self-correcting wind tunnelThe feasibility of controlling the flow actively through the walls of a transonic, porous wall wind tunnel in order to minimize wall interference effects on a test model is demonstrated. The method is based upon measuring the components of the disturbance velocity at discrete points along an imaginary surface in the flow field within the tunnel. A mathematical formulation of the flow field exterior to the surface including the boundary condition for unconfined flow, i.e., that all disturbance vanish at infinite, is used to determine if these measured velocity components are consistent with that boundary condition. If they are not, the theory provides a better approximation to the velocity component for unconfined flow, and the flow through the tunnel walls is readjusted iteratively until the measured quantities are consistent with unconfined flow. A brief review of theoretical methods is followed by a description of the Calspan self correcting wind tunnel design and operation, calibration with and without active wall control. Typical results obtained by approximating a conventional porous wall wind tunnel for an 0012 airfoil show that active wall control largely reproduces the correct shock wave position, eliminates wall interference of lift and drag, and reduces the interference effects on pitching moment to 10%.
Document ID
19760018136
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Vidal, R. J. (Calspan Corp. Buffalo, NY, United States)
Erickson, J. C., Jr. (Calspan Corp. Buffalo, NY, United States)
Catlin, P. A. (Calspan Corp. Buffalo, NY, United States)
Date Acquired
August 8, 2013
Publication Date
March 1, 1976
Publication Information
Publication: AGARD Wind Tunnel Design and Testing Tech.