Dynamic Stall Measurements and Computations for a VR-12 Airfoil with a Variable Droop Leading Edge

VFS-F59-000031

5/6/2003

Authors
Abstract
Content

High density-altitude operations of helicopters with advanced performance and maneuver capabilities have lead to fundamental research on active high-lift system concepts for rotor blades. The requirement for this type of system was to improve the sectional lift-to-drag ratio by alleviating dynamic stall on the retreating blade while simultaneously reducing the transonic drag rise of the advancing blade. Both measured and computational results showed that a Variable Droop Leading Edge (VDLE) airfoil is a viable concept for application to a rotor high-lift system. Results are presented for a series of 2D compressible dynamic stall wind tunnel tests with supporting CFD results for selected test cases. These measurements and computations show a dramatic decrease in the drag and pitching moment associated with severe dynamic stall when the VDLE concept is applied to the Boeing VR-12 airfoil. Test results also show an elimination of the negative pitch damping observed in the baseline moment hysteresis curves.

Meta TagsDetails
DOI
https://doi.org/10.4050/VFS-F59-000031
Citation
Chandrasekhara, M., Geissler, W., Martin, P., and McAlister, K., "Dynamic Stall Measurements and Computations for a VR-12 Airfoil with a Variable Droop Leading Edge," Forum 59 - Phoenix, AZ 2003, Phoenix, AZ, May 6, 2003, https://doi.org/10.4050/VFS-F59-000031.
Additional Details
Publisher
Published
5/6/2003
Product Code
VFS-F59-000031
Content Type
Technical Paper
Language
English