IP Library › Granted Patent US 10,889,370
Granted Patent B2
US 10,889,370 · App. 16/025,041 · Granted Jan 12, 2021

Chord-wise variable vortex generator

Inventor: Troy Thomas Bushmire (Saginaw, TX)
Assignee: TEXTRON INNOVATIONS INC.
B64C23/06B64C3/42B64C27/22B64C29/0033F15D1/007B64C2230/00
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Quick Facts
Patent No.
US 10,889,370
App. No.
16/025,041
Granted
Jan 12, 2021
Kind
B2
Abstract

One embodiment is an apparatus including an airfoil-shaped body; and a chordwise variable vortex generation system associated with the airfoil-shaped body, the chordwise variable vortex generation system controlling a deployment of at least one vortex generator on a surface of the airfoil-shaped body, wherein the deployment of the at least one vortex generator is dependent on a current angle of attack of the airfoil-shaped body. In some embodiments, the chordwise variable vortex generation system includes an actuator for controlling a location of the deployment of the at least one vortex generator responsive to a control signal indicative of the current angle of attack of the airfoil-shaped body. In certain embodiments, the surface of the airfoil-shaped body is a top surface of the airfoil-shaped body. In some embodiments, the airfoil-shaped body is an aircraft wing.

Claims (28)

1. An apparatus comprising:

an airfoil-shaped body; and

a chordwise variable vortex generation system associated with the airfoil-shaped body, the chordwise variable vortex generation system controlling a deployment of at least one vortex generator on a surface of the airfoil-shaped body, wherein the deployment of the at least one vortex generator is dependent on a current angle of attack of the airfoil-shaped body;

wherein the at least one vortex generator is configured to move closer to a leading edge of the airfoil-shaped body as the current angle of attack of the airfoil-shaped body increases and the at least one vortex generator is configured to move closer to a trailing edge of the airfoil-shaped body as the current angle of attack of the airfoil-shaped body decreases.

2. The apparatus of claim 1 , wherein the chordwise variable vortex generation system comprises an actuator for controlling a location of the deployment of the at least one vortex generator responsive to a control signal indicative of the current angle of attack of the airfoil-shaped body.

3. The apparatus of claim 1 , wherein the surface of the airfoil-shaped body comprises a top surface of the airfoil-shaped body.

4. The apparatus of claim 1 , wherein the airfoil-shaped body is an aircraft wing.

5. The apparatus of claim 1 , wherein the chordwise variable vortex generation system comprises a track disposed along the surface of the airfoil-shaped body between a leading edge of the airfoil-shaped body and a trailing edge of the airfoil-shaped body, the at least one vortex generator configured to move along the track from a first end of the track proximate the leading edge of the airfoil-shaped body to a second end of the track proximate the trailing edge of the airfoil-shaped body, and wherein a position of the at least one vortex generator along the track is dependent on the current angle of attack of the airfoil-shaped body.

6. The apparatus of claim 1 , wherein the chordwise variable vortex generation system comprises a set of vortex generators disposed in a line along the surface of the airfoil-shaped body between a leading edge of the airfoil-shaped body and a trailing edge of the airfoil-shaped body, wherein only one vortex generator of the set of vortex generators is active and the remaining vortex generators of the set of the vortex generators are inactive.

7. The apparatus of claim 6 , wherein the active vortex generator extends from the surface of the airfoil-shaped body and each inactive vortex generator lies flush with the surface of the airfoil-shaped body or is retracted within an interior of the airfoil-shaped body.

8. A rotorcraft comprising:

an airfoil-shaped body; and

a chordwise variable vortex generation system associated with the airfoil-shaped body, the chordwise variable vortex generation system controlling a deployment of at least one vortex generator on a surface of the airfoil-shaped body, wherein the deployment of the at least one vortex generator is dependent on a current angle of attack of the airfoil-shaped body;

wherein the at least one vortex generator is configured to move closer to a leading edge of the airfoil-shaped body as the angle of attack of the airfoil-shaped body increases and the at least one vortex generator is configured to move closer to a trailing edge of the airfoil-shaped body as the angle of attack of the airfoil-shaped body decreases.

9. The rotorcraft of claim 8 , wherein the chordwise variable vortex generation system comprises an actuator for controlling a location of the deployment of the at least one vortex generator responsive to a control signal indicative of the current angle of attack of the airfoil-shaped body.

10. The rotorcraft of claim 8 , wherein the surface of the airfoil-shaped body comprises a top surface of the airfoil-shaped body.

11. The rotorcraft of claim 8 , wherein the airfoil-shaped body is a wing of the rotorcraft.

12. The rotorcraft of claim 8 , wherein the chordwise variable vortex generation system comprises a track disposed along the surface of the airfoil-shaped body between a leading edge of the airfoil-shaped body and a trailing edge of the airfoil-shaped body, the at least one vortex generator configured to move along the track from a first end of the track proximate the leading edge of the airfoil-shaped body to a second end of the track proximate the trailing edge of the airfoil-shaped body, and wherein a position of the at least one vortex generator along the track is dependent on the current angle of attack of the airfoil-shaped body.

13. The rotorcraft of claim 8 , wherein the chordwise variable vortex generation system comprises a set of vortex generators disposed in a line along the surface of the airfoil-shaped body between the leading edge of the airfoil-shaped body and the trailing edge of the airfoil-shaped body, wherein only one vortex generator of the set of vortex generators comprises an active vortex generator and the remaining vortex generators of the set of the vortex generators each comprise an inactive vortex generator.

14. The rotorcraft of claim 13 , wherein the active vortex generator extends from the surface of the airfoil-shaped body and each inactive vortex generator lies flush with the surface of the airfoil-shaped body or is retracted within an interior of the airfoil-shaped body.

15. An apparatus comprising:

an airfoil-shaped body; and

a chordwise variable vortex generation system associated with the airfoil-shaped body, the chordwise variable vortex generation system controlling a deployment of at least one vortex generator on a surface of the airfoil-shaped body, wherein the deployment of the at least one vortex generator is dependent on a current angle of attack of the airfoil-shaped body;

wherein the chordwise variable vortex generation system comprises a set of vortex generators disposed in a line along the surface of the airfoil-shaped body between a leading edge of the airfoil-shaped body and a trailing edge of the airfoil-shaped body, wherein only one vortex generator of the set of vortex generators comprises an active vortex generator and the remaining vortex generators of the set of the vortex generators each comprise an inactive vortex generator; and

wherein the active vortex generator is configured to extend from the surface of the airfoil-shaped body and each inactive vortex generator is configured to lie flush with the surface of the airfoil-shaped body or be retracted within an interior of the airfoil-shaped body.

16. The apparatus of claim 15 , wherein the chordwise variable vortex generation system comprises an actuator for controlling a location of the deployment of the at least one vortex generator responsive to a control signal indicative of the current angle of attack of the airfoil-shaped body.

17. The apparatus of claim 15 , wherein the airfoil-shaped body is a wing of a rotorcraft.

18. The apparatus of claim 15 , wherein a vortex generator of the set of vortex generators closer to the leading edge of the airfoil-shaped body comprises the active vortex generator as the current angle of attack of the airfoil-shaped body increases and another vortex generator of the set of vortex generators closer to the trailing edge of the airfoil-shaped body comprises the active vortex generator as the current angle of attack of the airfoil-shaped body decreases.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 26, 2020
From: BELL HELICOPTER TEXTRON INC.
To: BELL HELICOPTER RHODE ISLAND INC.
Reel/Frame 054166/0386 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 26, 2020
From: BELL HELICOPTER RHODE ISLAND INC.
To: TEXTRON INNOVATIONS INC.
Reel/Frame 054166/0519 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 2, 2018
From: BUSHMIRE, TROY THOMAS
To: BELL HELICOPTER TEXTRON INC.
Reel/Frame 046250/0317 →
Continuity (1)
Related Publication 20200001973A1 · Jan 2, 2020