IP Library › Granted Patent US 11,162,432
Granted Patent B2
US 11,162,432 · App. 16/575,785 · Granted Nov 2, 2021

Integrated nozzle and diaphragm with optimized internal vane thickness

Inventors: Travis J Packer (Lebanon, OH); Brad Wilson VanTassel (Greer, SC); William Scott Zemitis (Simpsonville, SC)
Assignee: General Electric Company
F02C9/22F01D5/189F01D9/065F05D2220/32F05D2240/128F05D2250/90F05D2260/201
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Quick Facts
Patent No.
US 11,162,432
App. No.
16/575,785
Granted
Nov 2, 2021
Kind
B2
Abstract

A vane of a turbine system is provided. The vane includes: an internal cavity configured to receive a flow of cooling fluid; a variable thickness wall adjacent the internal cavity; and an impingement plate separating the variable thickness wall from the internal cavity, the impingement plate including a plurality of apertures for directing the cooling fluid into an impingement cavity and against the variable thickness wall, wherein the impingement plate is configured to follow a contour of the variable thickness wall.

Claims (25)

1. A vane, comprising:

an internal cavity configured to receive a flow of coaling fluid;

a variable thickness wall adjacent the internal cavity;

a variable thickness impingement plate separating the variable thickness wall from the internal cavity, the impingement plate including a plurality of apertures for directing the cooling fluid into an impingement cavity and against the variable thickness wall, wherein the impingement plate is configured to follow a contour of the variable thickness wall, and wherein the thickness of each section of the impingement plate is inversely proportional to a thickness of an adjacent section of the variable thickness wall; and

a plurality of support beams extending between and physically connected to the impingement plate and the variable thickness wall,

wherein the plurality of support beams are configured to maintain a constant separation distance between the impingement plate and the variable thickness wall and to provide structural support to the variable thickness wall.

2. The vane according to claim 1 , wherein the vane comprises a vane of a nozzle in a gas turbine system.

3. The vane according to claim 1 , wherein the variable thickness wall comprises one or more of a leading edge wall of the vane, a trailing edge wall of the vane, a pressure side wall of the vane, and a suction side wall of the vane.

4. The vane according to claim 1 , wherein the thickness of the variable thickness wall varies in accordance with expected operational forces on the vane.

5. The vane according to claim 4 , wherein the thickness of the variable thickness wall is 1.1 to 2.5 times a nominal wall thickness of the vane.

6. The vane according to claim 1 , further including a cooling channel formed in a thickened portion of the vane, wherein the cooling channel is fluidly coupled to the internal cavity.

7. The vane according to claim 1 , further including a channel for fluidly coupling the impingement cavity to at least one of an internal cavity of a diaphragm and a trailing edge cooling circuit of the vane.

8. The vane according to claim 7 , wherein the vane is formed integrally with the diaphragm.

9. The vane according to claim 1 , further including at least one channel for fluidly coupling the internal cavity to a wheel space of a gas turbine system.

10. A nozzle segment for a gas turbine system, comprising:

an integrated nozzle and diaphragm, the nozzle including at least one vane, each vane including:

an internal cavity configured to receive a flow of cooling fluid;

a variable thickness wall adjacent the internal cavity;

a variable thickness impingement plate separating the variable thickness wall from the internal cavity, the impingement plate including a plurality of apertures for directing the cooling fluid into an impingement cavity and against the variable thickness wall, wherein the impingement plate is configured to follow a contour of the variable thickness wall, and wherein the thickness of each section of the impingement plate is inversely proportional to a thickness of an adjacent section of the variable thickness wall; and

a plurality of support beams extending between and physically connected to the impingement plate and the variable thickness wall, wherein the plurality of support beams are configured to maintain a constant separation distance between the impingement plate and the variable thickness wall and to provide structural support to the variable thickness wall, and wherein the thickness of the variable thickness wall varies in accordance with expected operational forces on the vane.

11. The nozzle segment according to claim 10 , wherein the variable thickness wall comprises one or more of a leading edge wall of the vane, a trailing edge wall of the vane, a pressure side wall of the vane, and a suction side wall of the vane.

12. The nozzle segment according to claim 10 , wherein the thickness of the variable thickness wall is 1.1 to 2.5 times a nominal wall thickness of the vane.

13. The nozzle segment according to claim 10 , further including a cooling channel formed in a thickened portion of the vane, wherein the cooling channel is fluidly coupled to the internal cavity.

14. The nozzle segment according to claim 10 , further including a channel for fluidly coupling the impingement cavity to at least one of an internal cavity of the diaphragm and a trailing edge cooling circuit of the vane.

15. The nozzle segment according to claim 10 , further comprising at least one channel for fluidly coupling the internal cavity of the vane to a wheel space of the gas turbine system.

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 Sep 19, 2019
From: PACKER, TRAVIS J; VANTASSEL, BRAD WILSON; ZEMITIS, WILLIAM SCOTT
To: GENERAL ELECTRIC COMPANY
Reel/Frame 050430/0670 →
Continuity (1)
Related Publication 20210087979A1 · Mar 25, 2021
Cited By (2)
US 12,286,900 US 12,448,896