IP Library Granted Patent US 7,513,100
Granted Patent B2
US 7,513,100 · App. 11/257,204 · Granted Apr 7, 2009

Systems for low emission gas turbine energy generation

Assignee: General Electric Company
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Quick Facts
Patent No.
US 7,513,100
App. No.
11/257,204
Granted
Apr 7, 2009
Kind
B2
Abstract

Methods and systems for a dry low NO x gas turbine engine system include a gas turbine engine including at least one dry low NO x combustor. The combustor includes a plurality of injection points wherein at least some of the injection points are configured to inject a fuel into the combustor at a plurality of different locations. The system includes a water source coupled to the combustor and operable to inject water into others of the plurality of injection points. The system also includes a control system that includes a sensor configured to measure an exhaust gas concentration of the turbine, a processor programmed to receive a signal indicative of the turbine exhaust gas concentration, and to automatically control the water injection using the received exhaust gas concentration signal. Such systems in use together can mitigate visible emissions from the exhaust stack.

Claims (30)

1. A dry low NO x gas turbine engine system comprising:

a gas turbine engine comprising at least one dry low NO x combustor including a plurality of injection points, at least some of the injection points configured to inject a fuel into said combustor at a plurality of different locations;

a liquid water source coupled to said combustor and operable to inject liquid water into others of said plurality of injection points; and

a control system comprising:

a sensor configured to measure a concentration of NO x present in turbine exhaust gas;

a processor programmed to:

receive a signal indicative of the turbine exhaust gas NO x concentration; and

automatically transmit a signal for controlling the water injection using the received exhaust gas NO x concentration signal.

2. A gas turbine engine system in accordance with claim 1 wherein said processor is further programmed to transmit a signal for controlling a first fuel split schedule to said plurality of injection points during the injection of water and to transmit a signal for controlling a second fuel split schedule to said plurality of injection points during operation without the injection of water.

3. A gas turbine engine system in accordance with claim 1 wherein said processor is further programmed to:

transmit a signal for controlling water injection to facilitate reducing combustion dynamics due to flame instabilities, wherein the reduced combustion dynamics permits use of a plurality of fuel split schedules; and

transmit a signal for controlling fuel injection using a plurality of fuel split schedules configured to facilitate reducing hot and cold firing zones in said combustor.

4. A gas turbine engine system in accordance with claim 1 wherein said water source is controlled by a pump coupled to a variable frequency drive and wherein said processor is further programmed to transmit a command to the variable frequency drive that controls the speed of the water injection pump.

5. A gas turbine engine system in accordance with claim 1 wherein said control system is configured to receive a signal indicative of a NO 2 concentration in at least one of the turbine exhaust and the turbine exhaust stack.

6. A gas turbine engine system in accordance wit claim 1 wherein said processor is further programmed to determine a quantity of water injection using the received signal.

7. A gas turbine engine system in accordance with claim 1 wherein said processor is further programmed to automatically transmit a signal for controlling the water injection to maintain a NO 2 concentration in the turbine exhaust stack less than 30 ppm.

8. A gas turbine engine system in accordance with claim 1 wherein said processor is further programmed to automatically transmit a signal for controlling the water injection to maintain a NO 2 concentration in the turbine exhaust stack less than 15 ppm.

9. A combined cycle power plant system comprising:

a dry low NO x gas turbine engine system comprising at least one dry low NO x combustor including a plurality of injection points, at least some of the injection points configured to inject a fuel into said combustor at a plurality of different locations;

a liquid water source coupled to said combustor and operable to inject liquid water into others of said plurality of injection points; and

a control system comprising:

a sensor configured to measure a concentration of NO x present in an exhaust gas; and

a processor programmed to:

receive a signal indicative of the exhaust gas NO x concentration; and

automatically NO x transmit a signal for controlling the water injection using the received exhaust gas concentration signal.

10. A combined cycle power plant system in accordance with claim 9 wherein said water source is controlled by a pump coupled to a variable frequency drive.

11. A combined cycle power plant system in accordance with claim 10 wherein said processor is further programmed to transmit a command to the variable frequency drive that controls the speed of the water injection pump.

12. A combined cycle power plant system in accordance wit claim 9 wherein said control system is configured to receive a signal indicative of a NO 2 concentration in to turbine exhaust stack.

13. A combined cycle power plant system in accordance wit claim 9 wherein said processor is further programmed to determine a quantity of water injection using to received signal.

14. A combined cycle power plant system in accordance with claim 9 wherein said processor is further programmed to automatically transmit a signal for controlling the water injection to maintain a NO 2 concentration in the turbine exhaust stack less tan 15 ppm.

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 Oct 24, 2005
From: MOTTER, ERIC; ZIMINSKY, WILLY STEVE; FOSSUM, ARTHUR JAMES; IASILLO, ROBERT JOSEPH
To: GENERAL ELECTRIC COMPANY
Reel/Frame 017141/0784 →
Continuity (1)
Related Publication 20070089425A1 · Apr 26, 2007