IP Library Granted Patent US 9,222,410
Granted Patent B2
US 9,222,410 · App. 13/347,358 · Granted Dec 29, 2015

Power plant

Inventors: Rahul Jaikaran Chillar (Marietta, GA); Wulang Edwien Chriswindarto (Kennesaw, GA); Sanji Ekanayake (Mableton, GA); Julio Enrique Mestroni (Marietta, GA); Vijay Raghavendran Nenmeni (Atlanta, GA); Achalesh Kumar Pandey (Greenville, SC); David Lee Rogers (Marietta, GA); Morgan Carthledge Salter (Acworth, GA); Ajit Srivastava (Atlanta, GA)
Assignee: General Electric Company
F02C6/08F01K23/101F02C6/18F02C7/18F02C7/26F05D2260/80F05D2260/941F22G3/008Y02E20/14Y02E20/16
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Quick Facts
Patent No.
US 9,222,410
App. No.
13/347,358
Granted
Dec 29, 2015
Kind
B2
Abstract

A power plant is provided and includes a gas turbine engine to generate power, a heat recovery steam generator (HRSG) to produce steam from high energy fluids produced from the generation of power in the gas turbine engine, a steam turbine engine to generate additional power from the steam produced in the HRSG and a thermal load reduction system to reduce thermal loading of components of the HRSG and/or the steam turbine engine during at least startup and/or part load operations, which includes an eductor by which a mixture of compressor discharge air and entrained ambient air is injectable into the HRSG and/or an attemperator to cool superheated steam to be transmitted to the steam turbine engine and a detector disposed within the HRSG to facilitate identification of hot spots therein.

Claims (41)

1. A power plant, comprising:

a gas turbine engine to generate power;

a heat recovery steam generator (HRSG) to produce steam from high energy fluids produced from the generation of power in the gas turbine engine;

a steam turbine engine to generate power from the steam produced in the HRSG; and

a thermal load reduction system to control thermal loading of components of the HRSG and/or the steam turbine engine during at least startup and/or part load operations, which includes:

an eductor assembly by which a mixture of compressor discharge air and entrained fluids is injectable into the HRSG; and

a detector disposed within the HRSG to facilitate identification of hot spots therein.

2. The power plant according to claim 1 , wherein the detector is provided as a plurality of detectors.

3. The power plant according to claim 1 , wherein the detector comprises an infrared (IR) camera.

4. The power plant according to claim 1 , wherein the detector is rotatable, pivotable or movable in one or more of height, width and depth directions.

5. The power plant according to claim 4 , wherein the eductor assembly is rotatable, pivotable or movable in one or more of height, width and depth directions.

6. A power plant, comprising:

a gas turbine engine to generate power;

a heat recovery steam generator (HRSG) to produce steam from high energy fluids produced from the generation of power in the gas turbine engine;

a steam turbine engine to generate power from the steam produced in the HRSG;

an eductor assembly by which a mixture of compressor discharge air and entrained fluids is injectable into the HRSG; and

one or more duct burners disposed within the HRSG, the one or more duct burners being configured to fire in a presence of the mixture to increase steam production in the HRSG,

wherein the eductor assembly comprises first and second rows of eductor assemblies and the one or more duct burners comprises:

a first duct burner disposed downstream from the first row of eductor assemblies; and

a second duct burner disposed downstream from the second row of eductor assemblies.

7. The power plant according to claim 6 , wherein the entrained fluids comprise compressor discharge air, inlet air diverted from a gas turbine inlet or ambient air.

8. The power plant according to claim 6 , wherein the one or more duct burners is disposed downstream from the eductor assembly.

9. The power plant according to claim 6 , wherein a fuel flow rate to the one or more duct burners is controlled in accordance with steam production requirements.

10. The power plant according to claim 6 , wherein an operation of the eductor assembly is controlled in accordance with an operation of the one or more duct burners.

11. The power plant according to claim 6 , wherein the power plant is a combined cycle power plant.

12. The power plant according to claim 6 , wherein the power plant is a cogeneration power plant.

13. A power plant, comprising:

a gas turbine engine to generate power;

a heat recovery steam generator (HRSG) to produce steam from high energy fluids produced from the generation of power in the gas turbine engine;

a steam turbine engine to generate power from the steam produced in the HRSG;

an eductor assembly by which a mixture of compressor discharge air and entrained fluids is injectable into the HRSG; and

one or more duct burners disposed within the HRSG, the one or more duct burners being configured to fire in a presence of the mixture to increase steam production in the HRSG, wherein the eductor assembly is rotatable, pivotable or movable in one or more of height, width and depth directions.

14. The power plant according to claim 13 , wherein the entrained fluids comprise compressor discharge air, inlet air diverted from a gas turbine inlet or ambient air.

15. The power plant according to claim 13 , wherein the one or more duct burners is disposed downstream from the eductor assembly.

16. The power plant according to claim 13 , wherein a fuel flow rate to the one or more duct burners is controlled in accordance with steam production requirements.

17. The power plant according to claim 13 , wherein an operation of the eductor assembly is controlled in accordance with an operation of the one or more duct burners.

18. The power plant according to claim 13 , wherein the power plant is a combined cycle power plant.

19. The power plant according to claim 13 , wherein the power plant is a cogeneration power plant.

20. The power plant according to claim 13 , wherein the eductor assembly comprises first and second rows of eductor assemblies and one or more duct burners comprises:

a first duct burner disposed downstream from the first row of eductor assemblies; and

a second duct burner disposed downstream from the second row of eductor assemblies.

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 Jan 10, 2012
From: CHILLAR, RAHUL JAIKARAN; CHRISWINDARTO, WULANG EDWIEN; EKANAYAKE, SANJI; MESTRONI, JULIO ENRIQUE; NENMENI, VIJAY RAGHAVENDRAN; PANDEY, ACHALESH KUMAR; ROGERS, DAVID LEE; SALTER, MORGAN CARTHLEDGE; SRIVASTAVA, AJIT
To: GENERAL ELECTRIC COMPANY
Reel/Frame 027510/0737 →
Continuity (2)
Continuation In Part 13086119 · Apr 13, 2011
Related Publication 20120260667A1 · Oct 18, 2012