IP Library › Granted Patent US 11,453,488
Granted Patent B2
US 11,453,488 · App. 16/588,695 · Granted Sep 27, 2022

Lightweight parallel combustion lift system for vertical takeoff aircraft

Inventor: Donald Klemen (Carmel, IN)
Assignee: Rolls-Royce Corporation
B64C29/0016B60L50/10B64D27/02B64D27/10B64D27/16B64D27/24B64D33/04F02C3/04F02C7/22H02K7/1823B60L2200/10B64D2027/026
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Quick Facts
Patent No.
US 11,453,488
App. No.
16/588,695
Granted
Sep 27, 2022
Kind
B2
Abstract

A lightweight lift system for VTOL/VSTOL operation running in parallel with an existing turbine. This system distributes LP power by switching compressor flow and fuel proportionally over to the lift turbine module. As forward thrust is demanded, some of the power is transitioned back to the flight LP turbine, which can drive a variable propeller, fan or can supply jet thrust. As flight motion occurs, the power to the lift fan can be reduced to zero and lift closed off.

Claims (44)

1. A distributed combustor gas turbine system, comprising:

a gas turbine, comprising:

a compressor;

a first combustor and,

a first turbine, the first turbine in fluid communication with and downstream from the compressor and first combustor via a first passage; wherein the first turbine drives the compressor and a first power output;

a power turbine comprising

a second combustor,

a second turbine,

the power turbine remote from the first turbine and the first combustor, the power turbine being in fluid communication with the compressor via a second passage;

a second power output coupled to a second load, the second turbine drives the second power output, wherein the first power output and the second power output are independent of each other, and wherein an exhaust outlet of the second turbine is located within a duct containing a lift fan upstream of the lift fan and configured such that an exhaust flow exiting the exhaust outlet acts as an ejector pump to supplement drawing air into an intake of the lift fan.

2. The system of claim 1 , wherein the first and second passages being isolated downstream from the compressor.

3. The system of claim 1 , wherein the first power output is connected to a propulsion fan and the second power output is connected to the lift fan.

4. The system of claim 1 , further comprising a valve in the second passage, said valve controlling flow from the compressor into the second passage.

5. The system of claim 1 , wherein the second combustor is in fluid communication with the first turbine, compressor and second turbine via the second passage; wherein the first passage forms an upstream portion of the second passage.

6. The system of claim 1 , wherein the second combustor is upstream of the second turbine and in fluid communication with the compressor and second turbine via the second passage; wherein the first passage and second passage are parallel.

7. The system of claim 1 , wherein the first and second turbines are not co-axial.

8. The system of claim 5 , wherein the first and second turbines are not co-axial.

9. A VTOL aircraft propulsion and lift system comprising:

a propulsion gas turbine, the propulsion gas turbine comprising:

a compressor;

a primary combustor and,

a primary turbine, the primary turbine in fluid communication with and downstream from the compressor and primary combustor via a first passage; wherein the primary turbine drives the compressor and a propulsor;

a lift fan power turbine, the lift fan power turbine comprising

a secondary combustor,

a secondary turbine, and

a lift fan driven by the secondary turbine;

the lift fan power turbine being located remotely from the primary turbine and the primary combustor, the lift fan power turbine being in fluid communication with the compressor via a second passage;

wherein the propulsor and the lift fan are not mechanically coupled;

wherein a force generated by the lift fan is not parallel to a thrust generated by the propulsor; and

wherein an exhaust outlet of the secondary turbine is located within a duct containing the lift fan upstream of the lift fan and configured such that an exhaust flow exiting the exhaust outlet acts as an ejector pump to supplement drawing air into an intake of the lift fan.

10. The system of claim 9 , wherein the first and second passages being isolated from one another downstream from the compressor.

11. The system of claim 9 , further comprising a valve in the second passage, said valve controlling flow from the compressor into the second passage.

12. The system of claim 9 , wherein the secondary combustor is in fluid communication with the primary turbine, compressor and secondary turbine via the second passage; wherein the first passage forms an upstream portion of the second passage.

13. The system of claim 9 , further comprising an electric generator driven by the lift fan power turbine, the electric generator electrically coupled to a plurality of electric fans providing roll, yaw and pitch control.

14. A method for localized power extraction from a working fluid, comprising

compressing a working fluid at a primary compressor;

dividing out from the compressed working fluid an auxiliary stream downstream of the primary compressor;

injecting fuel into the compressed working fluid in a primary combustor and heating the working fluid via combustion of the fuel injected into the compressed working fluid;

expanding the heated working fluid through a primary turbine and driving the primary compressor from work extracted from the expanded working fluid;

routing the auxiliary stream to an auxiliary combustion chamber remote from a core stream;

injecting fuel into the auxiliary stream in the auxiliary combustion chamber and heating the auxiliary stream via combustion of the fuel injected into the auxiliary stream; and,

expanding the heated auxiliary stream through an auxiliary turbine and driving a lift fan from work extracted from the expanded auxiliary stream, wherein an exhaust outlet of the auxiliary turbine is located within a duct containing the lift fan upstream of the lift fan and configured such that an exhaust flow exiting the exhaust outlet acts as an ejector pump to supplement drawing air into an intake of the lift fan.

15. The method of claim 14 , further comprising controlling operation of the lift fan by controlling a rate of fuel injected into the auxiliary combustion chamber.

16. The method of claim 14 , wherein the auxiliary stream is divided out prior to the working fluid entering the primary combustor or subsequent the working fluid exiting the primary turbine.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 1, 2019
From: KLEMEN, DONALD
To: ROLLS-ROYCE CORPORATION
Reel/Frame 050589/0722 →
Continuity (1)
Related Publication 20210094685A1 · Apr 1, 2021
Cited By (1)
US 12,195,192