Acoustic propagation using computational fluid dynamicsThe propagation characteristics of several helicopter airfoil profiles have been investigated using the transonic small disturbance equation. A test case was performed to generate a moving shock that propagated off the airfoil. Various grids were then examined to determine their ability to accurately capture these propagating shock waves. Finally, the case of airfoil-vortex interactions was thoroughly studied over a wide range of Mach numbers and airfoil shapes with particular emphasis on the transonic regime; this results in a highly conplicated fluctuation of lift, drag, and pitching moment. The calculated acoustic intensity levels, along with the details of the computational flow field, provide new insights into the understanding of transonic airfoil-vortex interactions.
Document ID
19870031972
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Baeder, J. D. (NASA Ames Research Center Moffett Field, CA, United States)
Mccroskey, W. J. (NASA Ames Research Center; U.S. Army, Aeroflightdynamics Directorate, Moffett Field CA, United States)
Srinivasan, G. R. (JAI Associates, Inc. Mountain View, CA, United States)