IP Library Granted Patent US 11,066,999
Granted Patent B2
US 11,066,999 · App. 16/249,056 · Granted Jul 20, 2021

Fuel cooled cooling air

Inventors: Joseph J. Sodaro (Manchester, CT); Thomas G. Phillips (Coventry, CT); Edmund E. Rochford (West Hartford, CT)
Assignee: Raytheon Technologies Corporation
F02C7/185F02C6/08F02C7/141F02C7/22F05D2220/323F05D2260/213F05D2260/232
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Quick Facts
Patent No.
US 11,066,999
App. No.
16/249,056
Granted
Jul 20, 2021
Kind
B2
Abstract

A gas turbine engine includes a main compressor section having a downstream most location, and a cooling air tap at a location upstream of the downstream most location. A main turbine section, each of the main turbine section and the main compressor section are mounted within a housing, and each have rotatable components. A first heat exchanger is connected to the cooling air tap. The first heat exchanger is also connected to receive fuel to be supplied to a combustor in the gas turbine engine, and such that the fuel may cool the cooling air in the first heat exchanger. A boost compressor is connected to receive air downstream of the first heat exchanger and connected to deliver the cooling air to at least one of the rotatable components in at least one of the compressor and turbine sections.

Claims (19)

1. A gas turbine engine comprising:

a main compressor section having a downstream most location, and a cooling air tap at a location upstream of the downstream most location to tap cooling air;

a main turbine section, each of said main turbine section and said main compressor section mounted within a housing, and each having rotatable components;

a first heat exchanger connected to said cooling air tap, said first heat exchanger also connected to receive fuel to be supplied to a combustor in said gas turbine engine such that said fuel cools said cooling air in said first heat exchanger;

a boost compressor connected to receive the cooling air downstream of said first heat exchanger and connected to deliver the cooling air to at least one first rotatable component of the rotatable components in at least one of said compressor section and said turbine section;

a high pressure tap for tapping air downstream of said downstream most location as power air, said high pressure tap being connected to provide said power air across a first boost turbine, said first boost turbine configured to expand the power air;

a second boost turbine connected by a first line to receive and expand a first portion of air from said first boost turbine and configured to drive said boost compressor; and

a second line connected to receive a second portion of air from said first boost turbine and configured to deliver the second portion of air downstream of said first boost turbine to a second rotatable component of the rotatable components.

2. The gas turbine engine as set forth in claim 1 , wherein a second heat exchanger is mounted downstream of said boost compressor.

3. The gas turbine engine as set forth in claim 2 , wherein said fuel is routed downstream of said first heat exchanger to said second heat exchanger to further cool said cooling air in said second heat exchanger.

4. The gas turbine engine as set forth in claim 3 , wherein said cooling air is supplied to cool a high pressure turbine in said turbine section.

5. The gas turbine engine as set forth in claim 4 , wherein said second of the rotatable components is a low pressure turbine in said main turbine section.

6. The gas turbine engine as set forth in claim 5 , wherein said first portion of air expanded across the second boost turbine section is supplied to an exhaust nozzle for cooling said exhaust nozzle.

7. The gas turbine engine as set forth in claim 1 , wherein said at least one first rotatable component of the rotatable components is a high pressure turbine in said turbine section.

8. The gas turbine engine as set forth in claim 1 , wherein said second rotatable component of the rotatable components is a low pressure turbine in said main turbine section.

9. The gas turbine engine as set forth in claim 8 , wherein said first portion of air expanded across the second boost turbine section is supplied to an exhaust nozzle for cooling said exhaust nozzle.

10. The gas turbine engine as set forth in claim 1 , wherein said first portion of air expanded across the second boost turbine section is supplied to an exhaust nozzle for cooling said exhaust nozzle.

11. The gas turbine engine as set forth in claim 1 , wherein a fixed orifice separates a volume of said first portion of air delivered to said second boost turbine and a volume of said second portion of air delivered to said second rotatable component of the rotatable components.

12. The gas turbine engine as set forth in claim 1 , wherein said control is programmed to control said volume of said first portion of air delivered to said second boost turbine and said volume of said second portion of air delivered to said second rotatable component of the rotatable components.

Assignments (3)
CHANGE OF NAME Recorded Jul 27, 2023
From: RAYTHEON TECHNOLOGIES CORPORATION
To: RTX CORPORATION
Reel/Frame 064714/0001 →
CHANGE OF NAME Recorded Jun 16, 2021
From: UNITED TECHNOLOGIES CORPORATION
To: RAYTHEON TECHNOLOGIES CORPORATION
Reel/Frame 056597/0188 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 14, 2019
From: SODARO, JOSEPH J.; PHILLIPS, THOMAS G.; ROCHFORD, EDMUND E.
To: UNITED TECHNOLOGIES CORPORATION
Reel/Frame 051004/0326 →
Continuity (1)
Related Publication 20200224591A1 · Jul 16, 2020