Aircraft system with distributed propulsion
A propulsion system for an aircraft includes at least two gas turbine engines and at least one auxiliary propulsion fan. The at least one auxiliary propulsion fan is configured to selectively receive a motive force from either or both of the at least two gas turbine engines through at least one shaft operatively coupled to the at least one auxiliary propulsion fan.
1. A propulsion system for an aircraft, the propulsion system comprising:
at least two gas turbine engines;
at least one propulsion fan configured to selectively receive a motive force from either or both of the at least two gas turbine engines through at least one shaft operatively coupled to the at least one propulsion fan;
an electric fan driving motor configured to selectively receive electric power input from one or more electric power sources; and
a fan driving transmission mechanically coupled to the at least one shaft and the electric fan driving motor, the fan driving transmission configured to selectively drive rotation of the at least one propulsion fan responsive to the motive force from either or both of the electric fan driving motor and at least one of the at least two gas turbine engines.
2. The propulsion system of claim 1 , wherein the at least two gas turbine engines comprise a first gas turbine engine and a second gas turbine engine operably coupled through the at least one shaft to the at least one propulsion fan.
3. The propulsion system of claim 2 , further comprising at least one clutch operably coupled between the first gas turbine engine, the second gas turbine engine, and the at least one shaft.
4. The propulsion system of claim 2 , further comprising at least one disconnect between the first gas turbine engine, the second gas turbine engine, and the at least propulsion fan.
5. The propulsion system of claim 1 , wherein the at least one propulsion fan is located in a tail section of the aircraft and further comprising at least one thrust reverser associated with the at least one propulsion fan.
6. The propulsion system of claim 1 , wherein the at least one propulsion fan comprises a center rotating fan or at least two counter-rotating fans.
7. The propulsion system of claim 1 , wherein the one or more electric power sources comprise a generator driven by an auxiliary power unit.
8. The propulsion system of claim 7 , wherein the one or more electric power sources comprise an energy storage system charged by one or more of the generator driven by the auxiliary power unit and an engine-driven generator driven by at least one of the at least two gas turbine engines.
9. The propulsion system of claim 8 , wherein the energy storage system comprises one or more of: a battery system, a supercapacitor system, a hybrid storage system, and a fuel cell system.
10. A method comprising:
combining a motive force from either or both of at least two gas turbine engines through a shared drive shaft;
providing the motive force to drive rotation of at least one propulsion fan operatively coupled to shared drive shaft;
controlling an electric fan driving motor responsive to electric power input from one or more electric power sources; and
selectively driving rotation of the at least one propulsion fan responsive to the motive force from either or both of the electric fan driving motor and at least one of the at least two gas turbine engines through a fan driving transmission mechanically coupled to the shared drive shaft and the electric fan driving motor.
11. The method of claim 10 , wherein the at least two gas turbine engines comprise a first gas turbine engine and a second gas turbine engine operably coupled through the shared drive shaft to the at least one propulsion fan.
12. The method of claim 11 , further comprising:
controlling engagement of at least one clutch operably coupled between the first gas turbine engine, the second gas turbine engine, and the shared drive shaft.
13. The method of claim 11 , further comprising:
controlling engagement of at least one disconnect between the first gas turbine engine, the second gas turbine engine, and the at least one propulsion fan.
14. The method of claim 10 , wherein the at least one propulsion fan comprises a center rotating fan or at least two counter-rotating fans located in a tail section of an aircraft and further comprising:
controlling at least one thrust reverser associated with the at least one propulsion fan.
15. The method of claim 10 , wherein the one or more electric power sources comprise an energy storage system, and further comprising:
charging the energy storage system by one or more of a generator driven by an auxiliary power unit and an engine-driven generator driven by at least one of the at least two gas turbine engines, wherein the energy storage system comprises one or more of: a battery system, a supercapacitor system, a hybrid storage system, and a fuel cell system.
16. A propulsion system for an aircraft, the propulsion system comprising:
a first gas turbine engine;
a second gas turbine engine;
a mechanical power mixing means operably coupled to the first gas turbine engine and the second gas turbine engine;
a fan driving motor; and
a propulsion fan configured to selectively receive a motive force from either or both of the mechanical power mixing means and the fan driving motor.
17. The propulsion system of claim 16 , wherein the mechanical power mixing means comprises a first engine drive shaft coupled through a first clutch to a gearbox, a second engine drive shaft coupled through a second clutch to the gearbox, and a shared drive shaft operably coupled between the gearbox and a fan driving transmission operably coupled to the propulsion fan.
18. The propulsion system of claim 17 , further comprising a first bevel gearbox operably coupled between the first gas turbine engine and the first engine drive shaft, and second bevel gearbox operably coupled between the second gas turbine engine and the second engine drive shaft.