IP Library Granted Patent US 12,410,730
Granted Patent B1
US 12,410,730 · App. 18/642,882 · Granted Sep 9, 2025

Turbine shroud and turbomachine with cooling circuit

Inventors: Katherine Courtlyn MacManus (Greenville, SC); Daniel Robert Burnos (Greer, SC); Ibrahim Sezer (Greenville, SC); Bradley James Miller (Simpsonville, SC); Johnathan Ray Wallen (Greenville, SC)
Assignee: GE Infrastructure Technology, LLC
F01D25/12F01D25/246F05D2240/11F05D2260/201
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Quick Facts
Patent No.
US 12,410,730
App. No.
18/642,882
Granted
Sep 9, 2025
Kind
B1
Abstract

The present disclosure provides a turbine shroud with a cooling circuit and turbomachine with the subject turbine shroud. The turbine shroud includes a body with a structural member thereon. The body is coupled to a turbomachine casing or an intermediate component for coupling the body to the turbomachine casing. A cooling circuit within the body is in fluid communication with a cooling chamber adjacent the body. The cooling circuit includes an inlet passage extending through the structural member of the body, and an outlet passage fluidly coupled to the inlet passage and extending through an external surface of the body.

Claims (51)

1. A turbine shroud comprising:

a body including a structural member thereon, and a forward end positioned opposite an aft end, wherein the body is configured for coupling to a turbomachine casing; and

a cooling circuit within the body and in fluid communication with a cooling chamber defined radially outward of the body, the cooling circuit including:

a plurality of inlet passages extending through the structural member of the body and spaced along a length thereof, and

an outlet passage fluidly coupled to the inlet passages and extending through an external surface of the body,

wherein the structural member includes a rib on a radially outward surface of the body, the rib extending between the forward end and the aft end, and the cooling circuit includes at least one first plenum extending within the rib of the body and in fluid communication with the plurality of inlet passages, wherein the plurality of inlet passages are shaped to direct a cooling air into the first plenum and toward an underside surface of the structural member.

2. The turbine shroud of claim 1 , wherein the cooling circuit further includes a second plenum fluidly coupled to the first plenum and within a different structural member of the body, wherein the second plenum fluidly couples the first plenum to the outlet passage.

3. The turbine shroud of claim 1 , further comprising an impingement panel positioned between the rib and the cooling chamber, wherein the impingement panel includes a plurality of impingement holes fluidly coupling the cooling chamber to the plurality of inlet passages of the cooling circuit.

4. The turbine shroud of claim 3 , wherein the impingement panel extends between a first hook and a second hook extending outward from the body.

5. The turbine shroud of claim 4 , further comprising an intermediate component disposed between the body and the turbomachine casing; and wherein the first hook and the second hook engage respective recesses in the intermediate component.

6. The turbine shroud of claim 4 , wherein the first hook and the second hook are configured to engage respective recesses in the turbomachine casing.

7. The turbine shroud of claim 1 , wherein the body further includes:

a first sidewall extending between the forward end and the aft end;

a second sidewall extending between the forward end and the aft end, opposite the first sidewall;

an outer surface extending between the first sidewall and the second sidewall, the outer surface oriented toward the cooling chamber and having the rib thereon; and

an inner surface oriented toward a blade structure and a hot gas flow path for the turbomachine.

8. The turbine shroud of claim 7 , wherein the rib is a first rib, and the body further includes a second rib on the radially outward surface, each of the first rib and the second rib extending between the forward end and the aft end and including the plurality of inlet passages into a respective cooling circuit.

9. The turbine shroud of claim 8 , wherein the cooling circuit further includes at least two second plenums fluidly coupled to respective first plenums and within different structural members of the body, wherein the at least two second plenums fluidly couple the respective first plenums to outlet passages defined in the forward end and the aft end.

10. The turbine shroud of claim 7 , wherein the rib extends between the first sidewall and the second sidewall.

11. The turbine shroud of claim 10 , wherein the cooling circuit further includes a second plenum fluidly coupled to the at least one first plenum and within a different structural member of the body, wherein the second plenum fluidly couples the at least one first plenum to the outlet passage defined in at least one of the first sidewall or the second sidewall.

12. A turbomachine comprising:

a blade structure configured to rotate about a rotation axis of a rotor; and

a turbine shroud oriented toward the blade structure and coupled to a turbomachine casing, the turbine shroud including:

a body including a structural member thereon and a forward end positioned opposite an aft end, wherein the body is coupled to one of a turbomachine casing or an intermediate component for coupling the body to the turbomachine casing; and

a cooling circuit within the body and in fluid communication with a cooling chamber adjacent the body, the cooling circuit including:

a plurality of inlet passages extending through the structural member of the body and spaced along a length thereof, and

an outlet passage fluidly coupled to the inlet passages and extending through an external surface of the body,

at least one first plenum extending within the structural member and in fluid communication with the plurality of inlet passages; and

at least one second plenum fluidly coupled to the first plenum and within a different structural member of the body, wherein the second plenum fluidly couples the first plenum to the outlet passage defined in the aft end.

13. The turbomachine of claim 12 , further comprising an impingement panel positioned between the structural member of the body and cooling chamber, wherein the impingement panel includes a plurality of impingement holes fluidly coupling the cooling chamber to the plurality of inlet passages of the cooling circuit.

14. The turbomachine of claim 13 , wherein the impingement panel extends between a first hook and a second hook extending outward from the body.

15. The turbomachine of claim 12 , wherein the body further includes:

a first sidewall extending between the forward end and the aft end;

a second sidewall extending between the forward end and the aft end, opposite the first sidewall;

an outer surface extending between the first sidewall and the second sidewall, the outer surface oriented toward the cooling chamber and having the structural member thereon; and

an inner surface oriented toward a blade structure and a hot gas flow path for the turbomachine.

16. A turbine shroud comprising:

a body including a structural member thereon, and a forward end positioned opposite an aft end, wherein the body is configured for coupling to a turbomachine casing; and

a cooling circuit within the body and in fluid communication with a cooling chamber defined radially outward of the body, the cooling circuit including:

an inlet passage extending through the structural member of the body,

an outlet passage fluidly coupled to the inlet passage and extending through an external surface of the body,

at least one first plenum extending within the structural member and in fluid communication with the inlet passage, and

at least one second plenum fluidly coupled to the first plenum and within a different structural member of the body, wherein the second plenum fluidly couples the first plenum to the outlet passage defined in the aft end.

17. The turbine shroud of claim 16 , wherein the body further includes:

a first sidewall extending between the forward end and the aft end;

a second sidewall extending between the forward end and the aft end, opposite the first sidewall;

an outer surface extending between the first sidewall and the second sidewall, the outer surface oriented toward the cooling chamber and having the structural member thereon; and

an inner surface oriented toward a blade structure and a hot gas flow path for the turbomachine.

18. The turbine shroud of claim 17 , wherein the structural member is a first rib extending between the forward end and the aft end, the first rib defining the at least one first plenum in fluid communication with the inlet passage.

19. The turbine shroud of claim 18 , wherein the outlet passage is a first outlet passage of a plurality of outlet passages; and wherein a second outlet passage of the plurality of outlet passages is defined in at least one of the first sidewall or the second sidewall.

20. The turbine shroud of claim 16 , further comprising an impingement panel positioned between the structural member of the body and the cooling chamber, wherein the impingement panel includes a plurality of impingement holes fluidly coupling the cooling chamber to the inlet passage of the cooling circuit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 24, 2024
From: MACMANUS, KATHERINE COURTLYN; BURNOS, DANIEL ROBERT; SEZER, IBRAHIM; MILLER, BRADLEY JAMES; WALLEN, JOHNATHAN RAY
To: GE INFRASTRUCTURE TECHNOLOGY, LLC
Reel/Frame 067202/0908 →
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