IP Library Granted Patent US 11,661,889
Granted Patent B1
US 11,661,889 · App. 17/581,375 · Granted May 30, 2023

Hydrogen powered geared turbo fan engine with an off-set reduced core

Inventors: Marc J. Muldoon (Marlborough, CT); Joseph B. Staubach (Colchester, CT)
Assignee: RAYTHEON TECHNOLOGIES CORPORATION
F02C7/18F02C3/22F02C5/02F02C7/141F05D2220/323F05D2240/35F05D2250/312F05D2260/213F05D2260/232
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Quick Facts
Patent No.
US 11,661,889
App. No.
17/581,375
Granted
May 30, 2023
Kind
B1
Abstract

Aircraft propulsion systems include a fan shaft connected to a fan, the fan shaft defining a centerline axis of the aircraft propulsion system, one or more offset cores arranged at an angle to the centerline axis, the one or more offset cores each comprising a hydrogen burning combustor, a centerline cavity defined along the centerline axis, and a heat exchanger arranged within the centerline cavity. In operation, a portion of air is directed from the fan into the centerline cavity to provide a first working fluid to the heat exchanger within the centerline cavity.

Claims (43)

1. An aircraft propulsion system, comprising:

a fan shaft connected to a fan, the fan shaft defining a centerline axis of the aircraft propulsion system;

one or more offset cores arranged at an angle to the centerline axis, the one or more offset cores each comprising a hydrogen burning combustor;

a centerline cavity defined along the centerline axis;

one or more axial struts extending parallel with the centerline axis and defining, in part, the centerline cavity; and

a heat exchanger arranged within the centerline cavity;

wherein a portion of air is directed from the fan into the centerline cavity to provide a first working fluid to the heat exchanger within the centerline cavity, and

wherein at least one axial strut of the one or more axial struts comprises a centerline cavity inlet configured to receive the portion of air directed into the centerline cavity.

2. The aircraft propulsion system of claim 1 , wherein the fan shaft is a low speed spool of a turbine engine.

3. The aircraft propulsion system of claim 1 , further comprising a second heat exchanger arranged within the centerline cavity.

4. The aircraft propulsion system of claim 3 , wherein the second heat exchanger is an oil-air heat exchanger.

5. The aircraft propulsion system of claim 3 , wherein the second heat exchanger is an air-fuel heat exchanger.

6. The aircraft propulsion system of claim 1 , further comprising one or more radial struts configured to support at least one of the fan shaft and the fan.

7. The aircraft propulsion system of claim 6 , wherein at least one radial strut comprises a radial strut aperture configured to direct the portion of air into the centerline cavity.

8. The aircraft propulsion system of claim 1 , further comprising one or more hydrogen tanks configured to supply hydrogen to the one or more hydrogen burning combustors, wherein the hydrogen from the one or more hydrogen tanks is passed through the heat exchanger within the centerline cavity as a second working fluid.

9. An aircraft comprising:

an aircraft propulsion system comprising:

a fan shaft connected to a fan, the fan shaft defining a centerline axis of the aircraft propulsion system;

one or more offset cores arranged at an angle to the centerline axis, the one or more offset cores each comprising a hydrogen burning combustor;

a centerline cavity defined along the centerline axis;

one or more axial struts extending parallel with the centerline axis and defining, in part, the centerline cavity; and

a heat exchanger arranged within the centerline cavity;

wherein a portion of air is directed from the fan into the centerline cavity to provide a first working fluid to the heat exchanger within the centerline cavity; and

aircraft systems comprising at least one hydrogen tank and an aircraft-systems heat exchanger arranged remote from the one or more offset cores;

wherein hydrogen is supplied from the at least one hydrogen tank through a hydrogen flow path, passing through the aircraft-systems heat exchanger prior to being injected into the one or more hydrogen burning combustors for combustion, and

wherein at least one axial strut of the one or more axial struts comprises at least one of (i) a centerline cavity inlet configured to receive the portion of air directed into the centerline cavity and (ii) a centerline cavity outlet configured to direct the portion of air directed into the centerline cavity into a bypass flow.

10. The aircraft of claim 9 , wherein the fan shaft is a low speed spool of a turbine engine.

11. The aircraft of claim 9 , further comprising a second heat exchanger arranged within the centerline cavity.

12. The aircraft of claim 11 , wherein the second heat exchanger is one of a hydrogen-air heat exchanger, an oil-air heat exchanger, or an air-fuel heat exchanger.

13. The aircraft of claim 9 , further comprising one or more radial struts configured to support at least one of the fan shaft and the fan.

14. The aircraft of claim 13 , wherein at least one radial strut comprises a radial strut aperture configured to direct the portion of air into the centerline cavity.

15. An aircraft propulsion system, comprising:

a fan shaft connected to a fan, the fan shaft defining a centerline axis of the aircraft propulsion system;

one or more offset cores arranged at an angle to the centerline axis, the one or more offset cores each comprising a hydrogen burning combustor;

a centerline cavity defined along the centerline axis;

one or more axial struts extending parallel with the centerline axis and defining, in part, the centerline cavity; and

a heat exchanger arranged within the centerline cavity;

wherein a portion of air is directed from the fan into the centerline cavity to provide a first working fluid to the heat exchanger within the centerline cavity, and

wherein at least one axial strut of the one or more axial struts comprises a centerline cavity outlet configured to direct the portion of air directed into the centerline cavity into a bypass flow.

16. The aircraft propulsion system of claim 15 , wherein the fan shaft is a low speed spool of a turbine engine.

17. The aircraft propulsion system of claim 15 , further comprising a second heat exchanger arranged within the centerline cavity.

18. The aircraft propulsion system of claim 15 , further comprising one or more radial struts configured to support at least one of the fan shaft and the fan.

19. The aircraft propulsion system of claim 15 , further comprising one or more hydrogen tanks configured to supply hydrogen to the one or more hydrogen burning combustors, wherein the hydrogen from the one or more hydrogen tanks is passed through the heat exchanger within the centerline cavity as a second working fluid.

Assignments (2)
CHANGE OF NAME Recorded Jul 27, 2023
From: RAYTHEON TECHNOLOGIES CORPORATION
To: RTX CORPORATION
Reel/Frame 064714/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 30, 2022
From: MULDOON, MARC J.; STAUBACH, JOSEPH B.
To: RAYTHEON TECHNOLOGIES CORPORATION
Reel/Frame 059446/0609 →
Cited By (2)
US 12,460,580 US 12,631,148