IP Library Granted Patent US 8,650,873
Granted Patent B2
US 8,650,873 · App. 12/631,290 · Granted Feb 18, 2014

Water recirculation system for power plant backend gas temperature control

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Quick Facts
Patent No.
US 8,650,873
App. No.
12/631,290
Granted
Feb 18, 2014
Kind
B2
Abstract

A water recirculation system for a steam power plant includes a tapoff line which receives water from a downcomer, and an economizer link which receives water from the tapoff line and transports the water to an economizer.

Claims (39)

1. A water recirculation system for a steam power plant that creates combustion flue gases, the steam power plant also employing an economizer positioned within the combustion flue gases, the water recirculation system comprising:

an economizer link which receives heated water from a downcomer and transports the heated water to an economizer positioned within said combustion flue gases where the heated water is mixed with economizer feedwater; and

a recirculation pump connected to the economizer link adapted to pump the heated water through the economizer link to the economizer when an increase in temperature of the combustion flue gases is desired, wherein the recirculation system is turned off to stop the flow of the heated water from passing through the economizer link when an increase in the temperature of the combustion flue gases is not desired.

2. The water recirculation system of claim 1 wherein the water circulation system is turned off while the steam power plant operates at maximum continuous rating (MCR).

3. The water recirculation system of claim 1 further comprising:

a collection manifold which receives the heated water from the downcomer and is disposed before the economizer link.

4. The water recirculation system of claim 1 , wherein the recirculation pump is disposed before the economizer link.

5. The water recirculation system of claim 1 wherein the economizer link includes a control valve disposed between the recirculation pump and the economizer.

6. The water recirculation system of claim 5 wherein the economizer link includes a check valve disposed between the control valve and the economizer.

7. The water recirculation system of claim 1 further comprising:

a plurality of isolation valves disposed upstream and downstream of the recirculation pump.

8. A steam power plant comprising:

a furnace for creating combustion flue gases, including a plurality of waterwalls which heat water therein;

a steam drum in fluid communication with the plurality of waterwalls;

at least one downcomer which provides heated water from the steam drum to the waterwalls of the furnace; and

an economizer located within the combustion flue gases,

an economizer link which receives heated water from a downcomer and transports the heated water to an economizer;

a recirculation pump connected to the economizer link, adapted to pump the heated water through the economizer link to the economizer when an increase in temperature of the flue gases is desired, wherein the recirculation system is turned off to stop the flow of the heated water from passing through the economizer link when an increase in temperature of the flue gases is not desired.

9. The water recirculation system of claim 8 wherein the water circulation system is turned off while the steam power plant operates at maximum continuous rating (MCR).

10. The steam power plant of claim 8 further comprising:

a collection manifold which receives the heated water from the downcomer and is disposed before the economizer link.

11. The steam power plant of claim 8 , wherein the recirculation pump is disposed before the economizer link.

12. The steam power plant of claim 8 wherein the economizer link includes a control valve disposed between the recirculation pump and the economizer.

13. The steam power plant of claim 12 wherein the economizer link includes a check valve disposed between the control valve and the economizer.

14. A method of controlling backend gas temperature of a steam power plant, the method comprising:

diverting heated water from a downcomer to an economizer link;

pumping the heated water through the economizer link to an economizer when an increase in said backend gas temperature is desired;

combining the heated water with economizer feedwater; and

turning off the recirculation system to stop the flow of the heated water from passing through the economizer link when an increase in said backend gas temperature is not desired.

15. The method of claim 14 wherein the turning off the recirculation system includes turning off the recirculation system while the steam power plant operates at maximum continuous rating (MCR).

16. The method of claim 14 further comprising:

collecting the water before pumping the water through the economizer link to the economizer.

17. The method of claim 14 wherein the pumping the water through the economizer link to the economizer includes pumping the water through a recirculation pump.

18. The method of claim 17 further comprising:

controlling a flow of the heated water from the recirculation pump to the economizer with a control valve.

19. The method of claim 14 further comprising:

increasing the surface area of an existing economizer to form the economizer to which the heated water from the downcomer is pumped.

20. The method of claim 14 further comprising:

decreasing the surface area of an existing economizer to form the economizer to which the heated water from the downcomer is pumped.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 3, 2025
From: GENERAL ELECTRIC TECHNOLOGY GMBH
To: GE VERNOVA INFRASTRUCTURE TECHNOLOGY LLC
Reel/Frame 071474/0317 →
CHANGE OF NAME Recorded Aug 17, 2016
From: ALSTOM TECHNOLOGY LTD
To: GENERAL ELECTRIC TECHNOLOGY GMBH
Reel/Frame 039714/0578 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 4, 2009
From: GELBAR, DANNY E.
To: ALSTOM TECHNOLOGY LTD
Reel/Frame 023608/0171 →