IP Library Granted Patent US 10,550,768
Granted Patent B2
US 10,550,768 · App. 15/346,206 · Granted Feb 4, 2020

Intercooled cooled cooling integrated air cycle machine

Inventors: Joseph B. Staubach (Colchester, CT); Nathan Snape (Tolland, CT)
Assignee: United Technologies Corporation
F02C7/143F02C7/185B64D13/06F02C6/08F05D2260/211F05D2260/213
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Quick Facts
Patent No.
US 10,550,768
App. No.
15/346,206
Granted
Feb 4, 2020
Kind
B2
Abstract

An intercooled cooling system for a gas turbine engine is provided. The intercooled cooling system includes cooling stages in fluid communication with an air stream utilized for cooling. A first cooling stage is fluidly coupled to a bleed port of the gas turbine engine to receive and cool bleed air with the air stream to produce a cool bleed air. The intercooled cooling system includes a pump fluidly coupled to the first cooling stage to receive and increase a pressure of the cool bleed air to produce a pressurized cool bleed air. A second cooling stage is fluidly coupled to the pump to receive and cool the pressurized cool bleed air to produce an intercooled cooling air. The intercooled cooling system includes an air cycle machine in fluid communication to outputs of the cooling stages to selectively receive the cool bleed air or the intercooled cooling air.

Claims (19)

1. A gas turbine engine, comprising:

a compressor section;

a combustor section;

a turbine section; and

an intercooled cooling system for the gas turbine engine, the intercooled cooling system comprising:

a plurality of heat exchangers in fluid communication with an air stream utilized by the plurality of heat exchangers for cooling,

wherein a first heat exchanger of the plurality of heat exchangers is fluidly coupled to a first bleed port of the compressor section to receive and cool bleed air with the air stream to produce a cool bleed air;

a pump fluidly coupled to the first heat exchanger to receive and increase a pressure of the cool bleed air to produce a pressurized cool bleed air,

wherein a second heat exchanger of the plurality of heat exchangers is fluidly coupled to the pump to receive and cool the pressurized cool bleed air to produce an intercooled cooling air;

an air cycle machine in fluid communication to outputs of the first and second heat exchangers to selectively receive at least a portion of the cool bleed air or at least a portion of the intercooled cooling air;

a first valve configured to selectively provide the cool bleed air to the air cycle machine without passing through the second heat exchanger, a second valve configured to selectively provide the intercooled cooling air to the air cycle machine, and a third valve configured to selectively provide the intercooled cooling air to the turbine section, wherein said second valve selectively delivers the intercooled cooling air to the air cycle machine and to the third valve, and wherein air delivered from said second valve towards said third valve passes into a mixing chamber, and a second bleed port from said compressor section delivers air into said mixing chamber to mix with said intercooled cooling air before reaching said third valve.

2. The gas turbine engine of claim 1 , wherein the first bleed port comprises a port at a low pressure location of the compressor section or a port at a mid-pressure location of the compressor section.

3. The gas turbine engine of claim 1 , wherein the first and second heat exchangers are positioned in a main bypass of the gas turbine engine to receive the air stream.

4. The gas turbine engine of claim 1 , wherein the air cycle machine comprises an air cycle turbine configured to receive and extract work from the portion of the cool bleed air or the portion of the intercooled cooling air.

5. The gas turbine engine of claim 1 , wherein the air cycle turbine produces a byproduct of cold air from the extraction of work from the portion of the cool bleed air or the portion of the intercooled cooling air.

6. The gas turbine engine of claim 5 , wherein the byproduct of cold air is provided as a cooling sink for an environmental control system.

7. The gas turbine engine of claim 1 , wherein the air cycle machine comprises a generator coupled to receive pneumatic power from an air cycle turbine.

8. The gas turbine engine of claim 7 , wherein the generator provides electricity based on the pneumatic power to one or more of an electric heater, an auxiliary system, a motor drive, and an aircraft system.

9. The gas turbine engine as set forth in claim 1 , wherein a fourth valve is positioned between said second bleed port and said mixing chamber to selectively allow or block flow from said second bleed port to said mixing chamber.

Assignments (4)
CHANGE OF NAME Recorded Jul 27, 2023
From: RAYTHEON TECHNOLOGIES CORPORATION
To: RTX CORPORATION
Reel/Frame 064714/0001 →
CORRECTIVE ASSIGNMENT TO CORRECT THE AND REMOVE PATENT APPLICATION NUMBER 11886281 AND ADD PATENT APPLICATION NUMBER 14846874. TO CORRECT THE RECEIVING PARTY ADDRESS PREVIOUSLY RECORDED AT REEL: 054062 FRAME: 0001. ASSIGNOR(S) HEREBY CONFIRMS THE CHANGE OF ADDRESS. Recorded Mar 4, 2021
From: UNITED TECHNOLOGIES CORPORATION
To: RAYTHEON TECHNOLOGIES CORPORATION
Reel/Frame 055659/0001 →
CHANGE OF NAME Recorded Sep 4, 2020
From: UNITED TECHNOLOGIES CORPORATION
To: RAYTHEON TECHNOLOGIES CORPORATION
Reel/Frame 054062/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 9, 2016
From: STAUBACH, JOSEPH B.; SNAPE, NATHAN
To: UNITED TECHNOLOGIES CORPORATION
Reel/Frame 040260/0094 →
Continuity (1)
Related Publication 20180128176A1 · May 10, 2018
Cited By (2)
US 12,359,619 US 12,497,924