Claims
- 1. An aerodynamic object comprising
at least one surface having a leading edge and a trailing edge, and defining a length between said leading edge and said trailing edge; at least one chamber within said object; at least one piezoelectric synthetic jet actuator for drawing fluid into said chamber through an intake and discharging fluid from said chamber through an outlet.
- 2. The aerodynamic object of claim 1, wherein said outlet is located between the intake and the leading edge.
- 3. The aerodynamic object of claim 1, wherein said outlet discharges fluid in a direction generally tangent to the at least one surface.
- 4. The aerodynamic object of claim 1, wherein said outlet is located at the trailing edge.
- 5. The aerodynamic object of claim 1, wherein said inlet is located about midway between the leading edge and the trailing edge.
- 6. The aerodynamic object of claim 5, wherein said outlet is located about 30% of the length from said leading edge.
- 7. The aerodynamic object of claim 1, wherein said inlet is located about 75% of the length from said leading edge.
- 8. The aerodynamic object of claim 7, wherein said outlet is located at the trailing edge.
- 9. The aerodynamic object of claim 1, further comprising means for driving said at least one piezoelectric synthetic jet actuator at a resonant frequency.
- 10. An aerodynamic object comprising a boundary layer pump for ingesting air at a first location and expelling air at a second location remote from said first location.
- 11. The aerodynamic object of claim 10, wherein the air expelled from said second location is directed generally tangent to a surface of the object.
- 12. The aerodynamic object of claim 10, wherein said boundary layer pump comprises at least one piezoelectric synthetic jet actuator.
- 13. The aerodynamic object of claim 12, wherein said piezoelectric synthetic jet actuator operates at a resonant frequency.
- 14. The aerodynamic object of claim 10 wherein the second location is located between the first location and a leading edge of the object.
- 15. The aerodynamic object of claim 10, wherein said second location is located at a trailing edge of the object.
- 16. A method of improving performance of an aerodynamic object, said method comprising ingesting air at a first location on said object and expelling air at a second location remote from said first location.
- 17. The method of claim 16, comprising driving at least one piezoelectric synthetic jet actuator to ingest and expel air.
- 18. The method of claim 16, comprising expelling air from the second location in a direction generally tangent to a surface of said object.
- 19. An airfoil comprising a leading edge and a trailing edge, and defining a length between said leading edge and said trailing edge, said airfoil comprising at least one internal chamber and at least one piezoelectric synthetic jet actuator for drawing fluid into the internal chamber through a first intake and discharging fluid from the internal chamber through a first outlet, wherein the first outlet is located between the first inlet and the leading edge, and wherein the fluid is discharged from the first outlet in a direction generally parallel to an adjacent external surface of said airfoil.
- 20. The airfoil of claim 19, further comprising a second outlet for discharging fluid from the trailing edge of said airfoil.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Patent Application Serial No. 60/278,790, filed Mar. 26, 2001, the entirety of which is hereby incorporated herein by reference for all purposes.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60278790 |
Mar 2001 |
US |