Claims
- 1. A method for controlling a plurality of combustors supplying a pressurized gas to a gas turbine, each of said combustors includes a combustion chamber having a first diffusion combustion part and a second premixed combustion part, a first air supply means for supplying a combustion air into the first, diffusion combustion part of said combustion chamber, and a second air supply means for adjusting an amount of air supplied into the second, premixed combustion part of said combustion chamber of the combustor to change a combustion condition of the combustor, the method comprising the steps of:
- measuring at least one of a temperature and a concentration of a component of the pressurized gas from a respective combustor of said plurality of combustors which corresponds to a combustion condition of the combustor,
- measuring a difference between the measured value of the pressurized gas and a desired value thereof which corresponds to a desired combustion condition of the combustor, and
- changing a rate of the amount of air supplied by the second air supply means of said respective combustor with respect to an amount of combustion air supplied by the first air supply means thereof in accordance with the measured difference to change a combustion condition of said respective combustor, and wherein said steps are performed for each of said plurality of combustors so that the combustion conditions of the combustors are changed to the desired combustion condition.
- 2. A method according to claim 1, wherein the desired combustion condition is an average combustion condition of the measured combustion conditions of at least two of the combustors.
- 3. A method according to claim 1, wherein the desired combustion condition is an appropriate combustion condition of the combustor based upon a load condition of the combustor.
- 4. A method according to claim 1, wherein the first air supply means supplies the combustion air for a diffusion combustion, and the second air supply means supplies an additional air to be added into the pressurized gas generated by the diffusion combustion.
- 5. A method according to claim 1, wherein, in each of the combustors, the rate of the amount of air supplied into the combustor by the second air supply means in relation to the amount of combustion air supplied into the combustor by the first air supply means is changed by a degree which is in proportion to the measured difference of each of the combustors.
- 6. A method according to claim 1, wherein, in each of the combustors, the change in the rate of the amount of air supplied into the combustor by the second air supply means in relation to the amount of combustion air supplied into the combustor by the first air supply means is a predetermined amount.
- 7. A method according to claim 1, wherein the temperature of the pressurized gas is measured and wherein, in each of the combustors, the rate of the amount of air supplied into the combustor by the second air supply means in relation to the amount of combustion air supplied into the combustor by the first air supply means is increased when the measured temperature of the pressurized gas is higher than the desired temperature of the pressurized gas, and the rate of the amount of air supplied into the combustor by the second air supply means in relation to the amount of combustion air supplied into the combustor by the first air supply means is decreased when the measured temperature of the pressurized gas is lower than the desired temperature of the pressurized gas.
- 8. A method according to claim 1, wherein a concentration density of a NOx (nitrogen oxide) component of the pressurized gas is measured as the measured combustion condition, the desired combustion condition is a desired concentration of NOx component of the pressurized gas, and in each of the combustors, the rate of the amount of air supplied into the combustor by the second air supply means in relation to the amount of combustion air supplied into the combustor by the first air supply means is increased when the measured NOx density concentration of the pressurized gas is higher than the desired NOx density concentration of the pressurized gas.
- 9. A method according to claim 1, wherein a concentration of a CO (carbon monoxide) component of the pressurized gas is measured as the measured combustion condition, the desired combustion condition is a desired concentration of CO component of the pressurized gas, and in each of the combustors, the rate of the amount of air supplied into the combustor by the second air supply means in relation to the amount of combustion air supplied into the combustor by the first air supply means is decreased when the measured CO concentration of the pressurized gas is higher than the desired CO concentration of the pressurized gas.
- 10. A method according to claim 2, wherein the desired combustion condition is an average combustion condition of the measured combustion conditions of all of the combustors.
- 11. A method according to claim 2, wherein the desired combustion condition is an average combustion condition of the measured combustion conditions of at least two of the combustors other than the combustor where the difference is being measured.
- 12. A method according to claim 1, wherein the measured combustion condition of each of the combustors is measured at a downstream side of the gas turbine.
- 13. A method for controlling a combustor supplying a pressurized gas to a gas turbine, said combustor including a combustion chamber having a first, diffusion combustion part and a second, premixed combustion part, a first air supply means for supplying a combustion air into the first, diffusion combustion part of said combustion chamber, and a second air supply means for adjusting an amount of air supplied into the second, premixed combustion part of said combustion chamber of the combustor to change a combustion condition of the combustor, the method comprising the steps of:
- measuring a temperature of the pressurized gas,
- measuring a difference between the measured value of the pressurized gas and a desired value thereof which corresponds to a desired combustion condition of the combustor, and
- changing a rate of the amount of air supplied by the second air supply means with respect to the amount of air supplied by the first air supply means in accordance with the measured difference to change the combustion condition of said combustor.
- 14. A method for controlling a combustor supplying a pressurized gas to a gas turbine, said combustor including a combustion chamber having a first, diffusion combustion part and a second, premixed combustion part, a first air supply means for supplying a combustion air into the first, diffusion combustion part of said combustion chamber, and a second air supply means for adjusting an amount of air supplied into the second, premixed combustion part of said combustion chamber of the combustor to change a combustion condition of the combustor, the method comprising the steps of:
- measuring a concentration of a component of the pressurized gas,
- measuring a difference between the measured value of the pressurized gas and a desired value thereof which corresponds to a desired combustion condition of the combustor, and
- changing a rate of the amount of air supplied by the second air supply means with respect to the amount of air supplied by the first air supply means in accordance with the measured difference to change the combustion condition of the combustor.
- 15. A method for controlling a combustor supplying a pressurized gas to a gas turbine, said combustor including a combustion chamber having a first, diffusion combustion part and a second, premixed combustion part, a first air supply means for supplying a combustion air into the first, diffusion combustion part of said combustion chamber, and a second air supply means for adjusting an amount of air supplied into the second, premixed combustion part of said combustion chamber of the combustor to change a combustion condition of the combustor, the method comprising the steps of:
- measuring at least one of a temperature and a concentration of a component of the pressurized gas,
- measuring a difference between the measured value of the pressurized gas and a desired value thereof which corresponds to a desired combustion condition of the combustor, and
- changing a rate of the amount of air supplied by the second air supply means with respect to the amount of air supplied by the first air supply means in accordance with the measured difference to change the combustion condition of said combustor.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2-329445 |
Nov 1990 |
JPX |
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Parent Case Info
This application is a Continuation of application Ser. No. 07/800,261, filed Nov. 29, 1991, now abandoned.
US Referenced Citations (6)
Foreign Referenced Citations (3)
Number |
Date |
Country |
1150715 |
Jun 1989 |
JPX |
61210233 |
Sep 1989 |
JPX |
2226366 |
Jun 1990 |
GBX |
Non-Patent Literature Citations (2)
Entry |
57-179519 Japan--Abstract (Nov. 1982). |
European Search Report EP 91 31 1080 (Mar. 1992). |
Continuations (1)
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Number |
Date |
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Parent |
800261 |
Nov 1991 |
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