NASA NTRS · 19900041142
Advanced rotor computations with a corrected potential method
Abstract
An unsteady Full-Potential Rotor code (FPR) has been enhanced with modifications directed at improving its drag prediction capability. The potential code has been rewritten with modifications to increase the code accuracy. Also, the shock generated entropy has been included to provide solutions comparable to the Euler equations. Two different weakly interacted boundary layer models have also been coupled to FPR in order to estimate skin-friction drag. One is a two-dimensional integral method and the other is a three-dimensional finite-difference scheme. The new flow solver is able to find accurate inviscid drags without recourse to numerical error tares. This permits the resolution of drag distributions resulting from rotor geometric variations. Good comparisons have been obtained between computed and measured torque for a rectangular and a highly swept model rotor.
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Bridgeman, John O., Strawn, Roger C., Caradonna, Francis X., Chen, Ching S.. 1989-01-01. Advanced rotor computations with a corrected potential method. https://ntrs.nasa.gov/citations/19900041142
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