IP Library › Granted Patent US 8,651,426
Granted Patent B2
US 8,651,426 · App. 13/170,702 · Granted Feb 18, 2014

Jet engine installation

Inventors: Romuald Morvant (Tamworth, GB); Kevin M Britchford (Belper, GB)
Assignee: Rolls-Royce PLC
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Quick Facts
Patent No.
US 8,651,426
App. No.
13/170,702
Granted
Feb 18, 2014
Kind
B2
Abstract

Noise generated by a gas turbine engine 6 supported by a pylon 8 on a wing 2 of an aircraft is reduced by influencing a shear layer generated between the free-stream flowfield and flow from the engine 6 . The shear layer is influenced by means of one or more winglets 18, 20, 22 which interact with the free-stream flowfield to deflect the shear layer 14 downwardly, to avoid interaction with a flap 4 on the wing 2 , or to reduce the strength of the shear layer 14.

Claims (23)

1. A jet engine installation on an aircraft, comprising:

a jet engine supported beneath a wing of an aircraft by a pylon; and

a flow deflector being disposed on a lateral side of the pylon to influence a shear layer generated between flow from the engine and the surrounding free-stream flowfield,

the flow deflector being adjustable about an axis which extends transversely of the pylon.

2. A jet engine installation as claimed in claim 1 , in which the engine is a turbofan engine.

3. A jet engine installation as claimed in claim 2 , in which the flow deflector is disposed to influence a shear layer generated between bypass flow from the engine and the free-stream flowfield.

4. A jet engine installation as claimed in claim 1 , in which the flow deflector is mounted on the pylon.

5. A jet engine installation as claimed in claim 4 , in which the flow deflector extends from the pylon substantially in the spanwise direction of the wing.

6. A jet engine installation as claimed in claim 1 , in which the deflector is positioned above the fan nacelle.

7. A jet engine installation as claimed in claim 1 , in which the deflector is positioned rearwardly of the trailing edge of the fan nacelle.

8. A jet engine installation as claimed in claim 1 , in which the deflector is positioned rearwardly of the trailing edge of the core fairing.

9. A jet engine installation as claimed in claim 1 , in which the trailing edge of the deflector is undulated.

10. A jet engine installation as claimed in claim 1 , in which the deflector is rotatable.

11. A jet engine installation as claimed in claim 10 , in which the deflector is rotatable to provide an angle of attack which can vary in the range from 0° to 15° relative to the angle of attack of the wing.

12. A jet engine installation as claimed in claim 1 , in which the rotation of the deflector is achieved using a linear actuator.

13. A jet engine installation as claimed in claim 1 , in which the flow deflector is positioned so as to be above the shear layer during normal flight of the aircraft.

14. A jet engine installation as claimed in claim 1 , in which the deflector deflects the surrounding flow downwards.

15. A jet engine installation as claimed in claim 1 , in which the deflector deflects the surrounding flow sideways.

16. A method of reducing noise during flight from an aircraft engine supported by a pylon beneath a wing of the aircraft, the method comprising:

deploying a flow deflector that is disposed on a lateral side of the pylon to deflect free-stream airflow between the engine and the wing thereby to influence a shear layer generated between the free-stream flowfield and flow from the engine, the flow deflector being deployed by rotating the flow deflector about an axis extending transversely of the pylon.

17. A method as claimed in claim 16 , in which deployment of the flow deflector causes free-stream airflow to be deflected downwards thereby to deflect the shear layer away from the wing.

18. A method as claimed in claim 16 , in which deployment of the flow deflector generates turbulence in the free-stream flowfield which promotes mixing of the free-stream airflow and the shear layer thereby to reduce the strength of the shear layer.

19. A method as claimed in claim 16 , in which deployment of the flow deflector accelerates flow over the pylon thereby to reduce the strength of the shear layer.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 28, 2011
From: MORVANT, ROMUALD; BRITCHFORD, KEVIN MARK
To: ROLLS-ROYCE PLC
Reel/Frame 026669/0775 →
Priority Claims (3)
GB 1011056.7 · Jul 1, 2010 · national
GB 1102597.0 · Feb 15, 2011 · national
GB 1102809.9 · Feb 18, 2011 · national
Continuity (1)
Related Publication 20120001022A1 · Jan 5, 2012