IP Library Patent Application 11960958
Patent Application
App. No. 11/960,958

METHOD OF CONTROLLING A PROCESS OF GENERATING POWER BY OXYFUEL COMBUSTION

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Quick Facts
Patent No.
US None
App. No.
11/960,958
Abstract

A method of controlling a process of generating power in a power plant with a boiler by combusting carbonaceous fuel with substantially pure oxygen. At full load conditions, the method includes introducing a first carbonaceous fuel feed stream into a furnace, introducing a first substantially pure oxygen feed stream into the furnace for combusting the first carbonaceous fuel feed stream with the oxygen, and recirculating a portion of the exhaust gas discharged from the furnace at a first recirculation flow rate to the furnace, to form, together with the first substantially pure oxygen feed stream, a first inlet gas stream having a predetermined average oxygen content, thereby discharging exhaust gas from the furnace at a first discharge flow rate. In second load conditions, corresponding to at most 90% load, the method includes introducing a second carbonaceous fuel feed stream into the furnace, introducing a second substantially pure oxygen feed stream into the furnace for combusting the second carbonaceous fuel feed stream with the oxygen, and recirculating a portion of the exhaust gas discharged from the furnace at a second recirculation flow rate to the furnace, to form, together with the second substantially pure oxygen feed stream, a second inlet gas stream, so as to discharge exhaust gas from the furnace at a second discharge flow rate, and controlling the second recirculation flow rate to be from the first recirculation flow rate to a value providing the second discharge flow rate to be substantially as high as the first discharge flow rate.

Claims (21)

1 . A method of controlling a process of generating power in a power plant with a boiler by combusting carbonaceous fuel with substantially pure oxygen, the method comprising, at full load conditions, the steps of:

(a1) introducing a first carbonaceous fuel feed stream into a furnace;

(b1) introducing a first substantially pure oxygen feed stream into the furnace for combusting the first carbonaceous fuel feed stream with the oxygen;

(c1) discharging exhaust gas via an exhaust gas channel from the furnace;

(d1) recovering heat from the exhaust gas by heat exchange surfaces arranged in the exhaust gas channel; and

(e1) recirculating a portion of the exhaust gas via an exhaust gas recirculating channel, at a first recirculation flow rate to the furnace, to form, together with the first substantially pure oxygen feed stream, a first inlet gas stream having a predetermined average oxygen content, thereby discharging exhaust gas from the furnace at a first discharge flow rate,

and, in second load conditions, corresponding to at most 90% of the full load, the steps of:

(a2) introducing a second carbonaceous fuel feed stream into the furnace;

(b2) introducing a second substantially pure oxygen feed stream into the furnace for combusting the second carbonaceous fuel feed stream with the oxygen;

(c2) discharging exhaust gas via the exhaust gas channel from the furnace;

(d2) recovering heat from the exhaust gas by the heat exchange surfaces arranged in the exhaust gas channel; and

(e2) recirculating a portion of the exhaust gas via the exhaust gas recirculating channel at a second recirculation flow rate to the furnace, to form, together with the second substantially pure oxygen feed stream, a second inlet gas stream, so as to discharge exhaust gas from the furnace at a second discharge flow rate, and controlling the second recirculation flow rate to be from the first recirculation flow rate to a value providing the second discharge flow rate to be substantially as high as the first discharge flow rate.

2 . The method according to claim 1 , wherein the second load conditions corresponds to at most 80% of the full load.

3 . The method according to claim 2 , wherein the second load conditions correspond to at most 70% of the full load.

4 . The method according to claim 3 , wherein the average oxygen content of the first inlet gas stream is, by volume, from about 20% to about 25%, and the average oxygen content of the second inlet gas stream is 0.70 to 0.78 times the average oxygen content of the first inlet gas stream.

5 . The method according to claim 3 , wherein the average oxygen content of the first inlet gas stream is, by volume, from about 20% to about 25%, and the average oxygen content of the second inlet gas stream is 0.72 to 0.75 times the average oxygen content of the first inlet gas stream.

6 . The method according to claim 3 , wherein the average oxygen content of the first inlet gas stream is, by volume, from about 40% to about 60%, and the average oxygen content of the second inlet gas stream is 0.73 to 0.82 times the average oxygen content of the first inlet gas stream.

7 . The method according to claim 3 , wherein the average oxygen content of the first inlet gas stream is, by volume, from about 40% to about 60%, and the average oxygen content of the second inlet gas stream is 0.77 to 0.81 times the average oxygen content of the first inlet gas stream.

8 . The method according to claim 1 , further comprising a step of measuring the discharge flow rate.

9 . The method according to claim 1 , further comprising a step of measuring the recirculation flow rate.

10 . The method according to claim 1 , further comprising controlling the second recirculation flow rate by a fan.

Assignments (3)
RELEASE OF PATENT SECURITY INTEREST RECORDED AT R/F 024892/0836 Recorded Aug 20, 2012
From: BNP PARIBAS, AS ADMINISTRATIVE AGENT
To: FOSTER WHEELER ENERGY CORPORATION
Reel/Frame 028811/0396 →
SECURITY AGREEMENT Recorded Aug 27, 2010
From: FOSTER WHEELER LLC; FOSTER WHEELER INC.; FOSTER WHEELER USA CORPORATION; FOSTER WHEELER NORTH AMERICA CORP.; FOSTER WHEELER ENERGY CORPORATION; FOSTER WHEELER INTERNATIONAL CORPORATION; FOSTER WHEELER AG; FOSTER WHEELER LTD.; FOSTER WHEELER HOLDINGS LTD.; FOSTER WHEELER DEVELOPMENT CORPORATION; FOSTER WHEELER BIOKINETICS, INC.
To: BNP PARIBAS, AS ADMINISTRATIVE AGENT
Reel/Frame 024892/0836 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 18, 2008
From: SELTZER, ANDREW; FAN, ZHEN; HACK, HORST; ROBERTSON, ARCHIBALD
To: FOSTER WHEELER ENERGY CORPORATION
Reel/Frame 020705/0542 →