IP Library Granted Patent US 10,989,068
Granted Patent B2
US 10,989,068 · App. 16/040,062 · Granted Apr 27, 2021

Turbine shroud including plurality of cooling passages

Inventors: Travis J Packer (Simpsonville, SC); Benjamin Paul Lacy (Greer, SC); Ibrahim Sezer (Greenville, SC); Zachary John Snider (Simpsonville, SC); Brad Wilson VanTassel (Easley, SC)
Assignee: General Electric Company
F01D25/12F01D11/08F05D2240/11F05D2260/201
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Quick Facts
Patent No.
US 10,989,068
App. No.
16/040,062
Granted
Apr 27, 2021
Kind
B2
Abstract

Turbine shrouds for turbine systems are disclosed. The turbine shrouds may include a unitary body including a forward and aft end, an outer surface facing a cooling chamber formed between the unitary body and a turbine casing of the turbine system, and an inner surface facing a hot gas flow path. The shrouds may also include a first cooling passage extending within the unitary body, and a plurality of impingement openings formed through the outer surface of the unitary body to fluidly couple the first cooling passage to the cooling chamber. Additionally, the shrouds may include a second cooling passage and/or a third cooling passage. The second cooling passage may extend adjacent the forward end and may be in fluid communication with the first cooling passage. The third cooling passage may extend adjacent the aft end, and may be in fluid communication with the first cooling passage.

Claims (79)

1. A turbine shroud coupled to a turbine casing of a turbine system, the turbine shroud comprising:

a unitary body including:

a forward end;

an aft end positioned opposite the forward end;

an outer surface facing a cooling chamber formed between the unitary body and the turbine casing; and

an inner surface facing a hot gas flow path for the turbine system;

a first cooling passage extending within the unitary body, the first cooling passage including a forward part positioned adjacent the forward end of the unitary body, an aft part positioned adjacent the aft end of the unitary body, and a central part positioned between the forward part and the aft part;

a plurality of impingement openings formed through the outer surface of the unitary body to fluidly couple the first cooling passage to the cooling chamber; and

a second cooling passage extending within the unitary body adjacent the forward end, the second cooling passage in fluid communication with the forward part of the first cooling passage, and

a third cooling passage extending within the unitary body adjacent the aft end, the third cooling passage in fluid communication with the aft part of the first cooling passage.

2. The turbine shroud of claim 1 , wherein the unitary body further comprises a plurality of support pins positioned within the first cooling passage.

3. The turbine shroud of claim 1 , wherein the unitary body further comprises at least one of:

a first rib formed adjacent the forward end, the first rib positioned between and separating the first cooling passage and the second cooling passage, or

a second rib formed adjacent the aft end, the second rib positioned between and separating the first cooling passage and the third cooling passage.

4. The turbine shroud of claim 3 , wherein the unitary body further comprises at least one of:

a first plurality of impingement holes formed through the first rib, the first plurality of impingement holes fluidly coupling the first cooling passage and the second cooling passage, or

a second plurality of impingement holes formed through the second rib, the second plurality of impingement holes fluidly coupling the first cooling passage and the third cooling passage.

5. The turbine shroud of claim 1 , wherein the unitary body further comprises at least one of:

a first plurality of support pins positioned within the second cooling passage, or

a second plurality of support pins positioned within the third cooling passage.

6. The turbine shroud of claim 1 , wherein the first cooling passage further comprises:

a first cooling passage wall extending between two opposing sides of the unitary body, the first cooling passage wall positioned within the first cooling passage and extending parallel to the forward end and the aft end.

7. The turbine shroud of claim 6 , wherein the first cooling passage includes:

a forward section formed between the forward end of the unitary body and the first cooling passage wall; and

an aft section formed between the aft end of the unitary body and the first cooling passage wall.

8. The turbine shroud of claim 1 , wherein the first cooling passage further comprises:

a first cooling passage wall extending between two opposing sides of the unitary body, the first cooling passage wall positioned within the first cooling passage and extending parallel to the forward end and the aft end; and

a second cooling passage wall extending between the forward end and the aft end, parallel to the two opposing sides of the unitary body, the second cooling passage wall positioned within the first cooling passage and extending perpendicular to the first cooling passage wall.

9. The turbine shroud of claim 8 , wherein the first cooling passage includes:

a first forward section formed between the forward end and the first cooling passage wall, the first forward section formed between a first side of the two opposing sides of the unitary body and the second cooling passage wall;

a second forward section formed between the forward end and the first cooling passage wall, the second forward section formed between a second side of the two opposing sides of the unitary body and the second cooling passage wall;

a first aft section formed between the aft end and the first cooling passage wall, the first aft section formed between the first side of the two opposing sides and the second cooling passage wall; and

a second aft section formed between the aft end and the first cooling passage wall, the second aft section formed between the second side of the two opposing sides and the second cooling passage wall.

10. The turbine shroud of claim 1 , further comprising:

a first exhaust hole in fluid communication with one of the first cooling passage or the second cooling passage,

wherein the first exhaust hole extends through one of:

the forward end of the unitary body, or

the inner surface of the unitary body.

11. The turbine shroud of claim 10 , further comprising:

a second exhaust hole in fluid communication with one of the first cooling passage or the third cooling passage,

wherein the second exhaust hole extends through one of:

the aft end of the unitary body, or

the inner surface of the unitary body.

12. A turbine system comprising:

a turbine casing; and

a first stage positioned within the turbine casing, the first stage including:

a plurality of turbine blades positioned within the turbine casing and circumferentially about a rotor;

a plurality of stator vanes positioned within the turbine casing, downstream of the plurality of turbine blades; and

a plurality of turbine shrouds positioned radially adjacent the plurality of turbine blades and upstream of the plurality of stator vanes, each of the plurality of turbine shrouds including:

a unitary body including:

a forward end;

an aft end positioned opposite the forward end;

an outer surface facing a cooling chamber formed between the unitary body and the turbine casing; and

an inner surface facing a hot gas flow path for the turbine system;

a first cooling passage extending within the unitary body, the first cooling passage including a forward part positioned adjacent the forward end of the unitary body, an aft part positioned adjacent the aft end of the unitary body, and a central part positioned between the forward part and the aft part;

a plurality of impingement openings formed through the outer surface of the unitary body to fluidly couple the first cooling passage to the cooling chamber; and

a second cooling passage extending within the unitary body adjacent the forward end, the second cooling passage in fluid communication with the forward part of the first cooling passage, and

a third cooling passage extending within the unitary body adjacent the aft end, the third cooling passage in fluid communication with the aft part of the first cooling passage.

13. The turbine system of claim 12 , wherein the unitary body of each of the plurality of turbine shrouds further comprises:

a plurality of support pins positioned within the first cooling passage.

14. The turbine system of claim 12 , wherein the unitary body of each of the plurality of turbine shrouds further comprises at least one of:

a first rib formed adjacent the forward end, the first rib positioned between and separating the first cooling passage and the second cooling passage, or

a second rib formed adjacent the aft end, the second rib positioned between and separating the first cooling passage and the third cooling passage.

15. The turbine system of claim 14 , wherein the unitary body of each of the plurality of turbine shrouds further comprises at least one of:

a first plurality of impingement holes formed through the first rib, the first plurality of impingement holes fluidly coupling the first cooling passage and the second cooling passage, or

a second plurality of impingement holes formed through the second rib, the second plurality of impingement holes fluidly coupling the first cooling passage and the third cooling passage.

16. The turbine system of claim 12 , wherein the unitary body of each of the plurality of turbine shrouds further comprises at least one of:

a first plurality of support pins positioned within the second cooling passage, or

a second plurality of support pins positioned within the third cooling passage.

17. The turbine system of claim 12 , wherein the first cooling passage of each of the plurality of turbine shrouds further comprises at least one of:

a first cooling passage wall extending between two opposing sides of the unitary body, the first cooling passage wall positioned within the first cooling passage and extending parallel to the forward end and the aft end, or

a second cooling passage wall extending between the forward end and the aft end, parallel to the two opposing sides of the unitary body, the second cooling passage wall positioned within the first cooling passage and extending perpendicular to the first cooling passage wall.

18. The turbine system of claim 17 , wherein each of the plurality of turbine shrouds further comprises at least one of:

a third cooling passage wall positioned within the second cooling passage and extending parallel to the two opposing sides of the unitary body, or

a fourth cooling passage wall positioned within the third cooling passage and extending parallel to the two opposing sides of the unitary body.

19. The turbine system of claim 12 , wherein each of the plurality of turbine shrouds further comprises:

a first exhaust hole in fluid communication with one of the first cooling passage or the second cooling passage, the first exhaust hole extending through one of the forward end of the unitary body, or the inner surface of the unitary body; and

a second exhaust hole in fluid communication with one of the first cooling passage or the third cooling passage, the second exhaust hole extending through one of the aft end of the unitary body, or the inner surface of the unitary body.

20. The turbine system of claim 12 , wherein the aft part of the first cooling passage formed in the unitary body includes a substantially serpentine pattern.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 17, 2023
From: GENERAL ELECTRIC COMPANY
To: GE INFRASTRUCTURE TECHNOLOGY LLC
Reel/Frame 065727/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 20, 2018
From: PACKER, TRAVIS J; LACY, BENJAMIN PAUL; SEZER, IBRAHIM; SNIDER, ZACHARY JOHN; VANTASSEL, BRAD WILSON
To: GENERAL ELECTRIC COMPANY
Reel/Frame 046410/0359 →
Continuity (1)
Related Publication 20200025026A1 · Jan 23, 2020
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