IP Library › Granted Patent US 10,723,474
Granted Patent B2
US 10,723,474 · App. 15/603,895 · Granted Jul 28, 2020

Variable geometry engine inlet for high speed aircraft

Inventor: Timothy F. Lauder (Oxford, CT)
Assignee: SIKORSKY AIRCRAFT CORPORATION
B64D33/02B64C21/08B64C21/10B64C27/06B64C27/82B64C2230/06B64C2230/20B64D2033/0226
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Quick Facts
Patent No.
US 10,723,474
App. No.
15/603,895
Granted
Jul 28, 2020
Kind
B2
Abstract

An aircraft includes an airframe, an engine mounted to the airframe, and an engine inlet for receiving an ambient airflow and providing the ambient airflow to the engine. An amount of airflow provided to the engine inlet is controllable.

Claims (24)

1. An aircraft comprising:

an airframe having a boundary layer diverter cavity formed therein;

an engine mounted to the airframe;

an engine inlet for receiving an ambient airflow and providing the ambient airflow to the engine, wherein an amount of airflow provided to the engine inlet is controllable; and

a deflector movable relative to the airframe between a first position and a second position to adjust an inlet area of the engine inlet and to control operation of the boundary layer diverter cavity;

wherein the airframe includes an outwardly ramped surface arranged upstream from the engine inlet, the ramped surface being operable to direct a portion of the ambient flow away from the engine inlet.

2. The aircraft of claim 1 , wherein the amount of airflow provided to the engine inlet is controllable based on a flight condition of the aircraft.

3. The aircraft of claim 1 , wherein an inlet area of the engine inlet is variable.

4. The aircraft of claim 1 , wherein the deflector is mounted to the airframe upstream from the engine inlet.

5. The aircraft of claim 1 , wherein the first position of the deflector is upstream from the second position of the deflector relative to the airflow.

6. The aircraft of claim 1 , wherein the deflector is operable in response to a pilot command.

7. The aircraft of claim 1 , wherein the deflector is operable automatically by a controller in response to a speed of the aircraft.

8. The aircraft of claim 1 , wherein airflow to the engine inlet is maximized when the deflector is in the first position.

9. The aircraft of claim 1 , wherein airflow to the engine inlet is minimized when the deflector is in the second position.

10. The aircraft of claim 1 , wherein when the deflector is in the first position, airflow into the boundary layer diverter cavity is substantially blocked and the boundary layer diverter cavity is non-operational.

11. The aircraft of claim 1 , wherein when the deflector is in the second position, the deflector is separated from the boundary layer diverter cavity airflow such that the boundary layer diverter cavity is fully operational.

12. The aircraft of claim 1 , wherein the engine inlet is partially submerged within the airframe.

13. A method of operating an aircraft, comprising:

directing a first portion of an airflow away from an engine inlet via an outwardly ramped surface of an airframe arranged upstream from the engine inlet;

directing a second portion of the airflow towards the engine inlet;

directing a third portion of the airflow towards a boundary layer diverter cavity formed in the airframe;

determining a flight condition of the aircraft; and

controlling the second portion of the airflow entering the engine inlet and the third portion of the airflow entering the boundary layer diverter cavity in response to the determined flight condition, wherein controlling the second portion and the third portion includes moving a deflector mounted to the airframe between a first position and a second position.

14. The method of claim 13 , wherein controlling the airflow entering the engine inlet includes varying an inlet area of the engine inlet.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 24, 2017
From: LAUDER, TIMOTHY F.
To: SIKORSKY AIRCRAFT CORPORATION
Reel/Frame 042492/0331 →
Continuity (1)
Related Publication 20180339784A1 · Nov 29, 2018
Cited By (1)
US 12,709,416