IP Library Granted Patent US 11,148,797
Granted Patent B1
US 11,148,797 · App. 16/833,630 · Granted Oct 19, 2021

Low observable aircraft having trinary lift fans

Inventors: Daniel Bryan Robertson (Southlake, TX); Kirk Landon Groninga (Keller, TX); Steven Ray Ivans (Ponder, TX); Matthew Edward Louis (Fort Worth, TX)
Assignee: Textron Innovations Inc.
B64C29/0025B64C15/14B64C21/00B64C27/26B64C27/30B64D33/04B64C3/10B64C2230/04B64C2230/06B64C2230/16
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Quick Facts
Patent No.
US 11,148,797
App. No.
16/833,630
Granted
Oct 19, 2021
Kind
B1
Abstract

An aircraft operable to transition between thrust-borne lift in a VTOL orientation and wing-borne lift in a forward flight orientation. The aircraft has a blended wing body and includes an engine, a trinary lift fan system, a forced air bypass system and an exhaust system. The engine has a turboshaft mode and a turbofan mode. The lift fan system includes a plurality of ducted fans in a tandem lateral and forward orientation. In the VTOL orientation of the aircraft, the engine is in the turboshaft mode coupled to the lift fan system such that the engine provides rotational energy to the ducted fans generating the thrust-borne lift. In the forward flight orientation of the aircraft, the engine is in the turbofan mode coupled to the forced air bypass system such that bypass air combines with engine exhaust in the exhaust system to provide forward thrust generating the wing-borne lift.

Claims (38)

1. An aircraft operable to transition between thrust-borne lift in a VTOL orientation and wing-borne lift in a forward flight orientation, the aircraft comprising:

a blended wing body;

an engine disposed within the body, the engine having a turboshaft mode and a turbofan mode, the engine configured to generate engine exhaust;

a trinary lift fan system disposed within the body, the lift fan system including two ducted fans in a tandem lateral position and a forward ducted fan;

a forced air bypass system disposed within the body, the forced air bypass system configured to generate bypass air; and

an exhaust system coupled to the engine and the forced air bypass system;

wherein, in the VTOL orientation, the engine is in the turboshaft mode coupled to the lift fan system such that the engine provides rotational energy to each of the ducted fans generating the thrust-borne lift; and

wherein, in the forward flight orientation, the engine is in the turbofan mode coupled to the forced air bypass system such that the bypass air combines with the engine exhaust in the exhaust system to provide forward thrust generating the wing-borne lift.

2. The aircraft as recited in claim 1 wherein the blended wing body further comprises a fuselage and a wing.

3. The aircraft as recited in claim 1 wherein the blended wing body further comprises a kite shaped body.

4. The aircraft as recited in claim 1 wherein the blended wing body further comprises a kite shaped body with winglets.

5. The aircraft as recited in claim 1 wherein each of the ducted fans further comprises a rotor assembly having a plurality of variable pitch rotor blades.

6. The aircraft as recited in claim 1 wherein the forward ducted fan further comprises a coaxial rotor system having counter-rotating rotor assemblies.

7. The aircraft as recited in claim 1 wherein the tandem lateral and forward orientation of the ducted fans is configured to generate pitch and roll control moments in the VTOL orientation.

8. The aircraft as recited in claim 1 wherein the forced air bypass system further comprises:

first and second inlets;

first and second bypass fans disposed within the body downstream of the first and second inlets, respectively; and

first and second bypass ducts disposed within the body downstream of the first and second bypass fans, respectively, the first and second bypass ducts coupled to the exhaust system.

9. The aircraft as recited in claim 1 wherein the forced air bypass system further comprises an inlet duct, a bypass fan coupled downstream of the inlet duct and a bypass duct coupled downstream of the bypass fan, the bypass duct coupled to the exhaust system.

10. The aircraft as recited in claim 1 wherein the exhaust system further comprises a film cooled nozzle.

11. The aircraft as recited in claim 1 further comprising a transmission disposed between the engine and the lift fan system, the transmission engaging the engine with the lift fan system when the engine is in the turboshaft mode and disengaging the engine from the lift fan system when the engine is in the turbofan mode.

12. The aircraft as recited in claim 1 further comprising a transmission disposed between the engine and the forced air bypass system, the transmission engaging the engine with the forced air bypass system when the engine is in the turbofan mode and disengaging the engine from the forced air bypass system when the engine is in the turboshaft mode.

13. The aircraft as recited in claim 1 wherein, in the forward flight orientation, the forced air bypass system is configured to generate a bypass ratio of between 8 to 1 and 12 to 1.

14. The aircraft as recited in claim 1 further comprising an active flow control system configured to generate control moments in the VTOL orientation and the forward flight orientation.

15. The aircraft as recited in claim 14 wherein at least a portion of the active flow control system is integral with the trinary lift fan system.

16. The aircraft as recited in claim 14 wherein at least a portion of the active flow control system is integral with the exhaust system.

17. The aircraft as recited in claim 14 wherein the active flow control system further comprises a pitch effector configured to generate pitch control moments in the forward flight orientation.

18. The aircraft as recited in claim 14 wherein the active flow control system further comprises roll effectors configured to generate roll control moments in the forward flight orientation.

19. The aircraft as recited in claim 14 wherein the active flow control system further comprises yaw effectors configured to generate yaw control moments in the VTOL orientation and the forward flight orientation.

20. An aircraft operable to transition between thrust-borne lift in a VTOL orientation and wing-borne lift in a forward flight orientation, the aircraft comprising:

a blended wing body;

an engine disposed within the body, the engine having a turboshaft mode and a turbofan mode, the engine configured to generate engine exhaust;

a trinary lift fan system disposed within the body, the lift fan system including two ducted fans in a tandem lateral position and a forward ducted fan configured to generate pitch and roll control moments in the VTOL orientation;

a forced air bypass system disposed within the body, the forced air bypass system configured to generate bypass air;

an exhaust system coupled to the engine and the forced air bypass system; and

an active flow control system configured to generate yaw control moments in the VTOL orientation and pitch, roll and yaw control moments in the forward flight orientation;

wherein, in the VTOL orientation, the engine is in the turboshaft mode coupled to the lift fan system such that the engine provides rotational energy to each of the ducted fans generating the thrust-borne lift; and

wherein, in the forward flight orientation, the engine is in the turbofan mode coupled to the forced air bypass system such that the bypass air combines with the engine exhaust in the exhaust system to provide forward thrust generating the wing-borne lift.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 18, 2021
From: BELL TEXTRON INC.
To: TEXTRON INNOVATIONS INC.
Reel/Frame 055658/0042 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 30, 2020
From: ROBERTSON, DANIEL BRYAN; GRONINGA, KIRK LANDON; IVANS, STEVEN RAY; LOUIS, MATTHEW EDWARD
To: BELL TEXTRON INC.
Reel/Frame 052266/0031 →
Continuity (1)
Provisional Application 63001286 · Mar 28, 2020
Cited By (3)
US 12,391,377 US 12,459,630 US 12,521,587