IP Library › Granted Patent US 11,371,786
Granted Patent B2
US 11,371,786 · App. 17/075,841 · Granted Jun 28, 2022

Heat exchanger for a gas turbine engine

Inventor: Matthew Ryan Johns (Centerville, OH)
Assignee: General Electric Company
F28F9/0231F28F2265/26
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Quick Facts
Patent No.
US 11,371,786
App. No.
17/075,841
Granted
Jun 28, 2022
Kind
B2
Abstract

A heat exchanger for a gas turbine engine includes a core configured to heat or cool a fluid flowing therethrough. The core, in turn, extends along a lateral direction between a first end of the core and a second end of the core and the core defining one or more fluid passages. Furthermore, the heat exchanger includes a manifold coupled to the first end or the second end of the core. The manifold, in turn, includes a manifold wall at least partially defining a fluid chamber in fluid communication with the one or more fluid passages. Moreover, the manifold further includes a feature permitting thermal expansion or thermal contraction of the manifold wall relative to the heat exchanger core.

Claims (28)

1. A heat exchanger for a gas turbine engine, the heat exchanger extending in a lateral direction between a first lateral end and a second lateral end, in an axial direction between a first axial end and a second axial end, and in a transverse direction between a forward side and an aft side, the heat exchanger comprising:

a core configured to heat or cool a fluid flowing therethrough, the core extending along the lateral direction between a first end of the core and a second end of the core, the core defining one or more fluid passages; and

a manifold coupled to the first end or the second end of the core, the manifold including a manifold wall at least partially defining a fluid chamber in fluid communication with the one or more fluid passages,

wherein the manifold further includes a feature, the feature permitting thermal expansion or thermal contraction of the manifold wall relative to the core, the feature comprising an undulating portion of the manifold wall that undulates in two dimensions.

2. The heat exchanger of claim 1 , wherein the feature permits thermal expansion or thermal contraction of the manifold wall relative to the core in the lateral direction.

3. The heat exchanger of claim 1 , wherein the undulating portion of the manifold wall includes a plurality of alternating ridges and valleys, each ridge and each valley extending from a forward end of the heat exchanger to an aft end of the heat exchanger.

4. The heat exchanger of claim 1 , wherein the undulating portion of the manifold wall undulates in three dimensions.

5. The heat exchanger of claim 1 , wherein the manifold wall includes a smooth portion extending between the undulating portion and the core.

6. The heat exchanger of claim 1 , wherein the undulating portion extends to the core.

7. The heat exchanger of claim 1 , wherein the manifold further includes one or more guide vanes positioned within a cavity and coupled to the manifold wall.

8. The heat exchanger of claim 1 , wherein the feature comprises one or more projections extending outward from the manifold wall.

9. The heat exchanger of claim 8 , wherein:

the manifold wall includes a forward portion positioned at the forward side of the heat exchanger and an aft portion positioned at the aft side of the heat exchanger; and

the one or more projections include a first row of projections extending along the forward portion of the manifold wall in the axial direction and second set of projections extending along from the aft portion of the manifold wall in the axial direction.

10. The heat exchanger of claim 1 , wherein the feature comprises a plurality of holes defined between the core and the manifold wall such that the plurality of holes extends through the manifold in the transverse direction.

11. The heat exchanger of claim 10 , wherein the manifold includes a plurality of tubular portions, each hole being positioned between a pair of the tubular portions.

12. A gas turbine engine, comprising:

a compressor;

a combustor;

a turbine;

a heat exchanger in operative association with at least one of the compressor, the combustor, or the turbine, the heat exchanger extending in a lateral direction between a first lateral end and a second lateral end, in an axial direction between a first axial end and a second axial end, and in a transverse direction between a forward side and an aft side, the heat exchanger comprising:

a core configured to heat or cool a fluid flowing therethrough, the core extending along the lateral direction between a first end of the core and a second end of the core, the core defining one or more fluid passages; and

a manifold coupled to the first end or the second end of the core, the manifold including a manifold wall at least partially defining a fluid chamber in fluid communication with the one or more fluid passages,

wherein the manifold further includes a feature, the feature permitting thermal expansion or thermal contraction of the manifold wall relative to the core, the feature comprising an undulating portion of the manifold wall that undulates in two dimensions.

13. The gas turbine engine of claim 12 , wherein the feature permits thermal expansion or thermal contraction of the manifold wall relative to the core in the lateral direction.

14. The gas turbine engine of claim 12 , wherein the undulating portion of the manifold wall includes a plurality of alternating ridges and valleys, each ridge and each valley extending from a forward end of the heat exchanger to an aft end of the heat exchanger.

15. The gas turbine engine of claim 12 , wherein the undulating portion of the manifold wall undulates in three dimensions.

16. The gas turbine engine of claim 12 , wherein the manifold wall includes a smooth portion extending between the undulating portion and the core.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 21, 2020
From: JOHNS, MATTHEW RYAN
To: GENERAL ELECTRIC COMPANY
Reel/Frame 054123/0676 →
Continuity (1)
Related Publication 20220120220A1 · Apr 21, 2022
Cited By (2)
US 12,259,194 US 12,498,184