IP Library Granted Patent US 11,378,019
Granted Patent B2
US 11,378,019 · App. 16/466,088 · Granted Jul 5, 2022

Gas turbine control apparatus and gas turbine control method

Inventors: Kazushige Takaki (Tokyo, JP); Akihiko Saito (Tokyo, JP); Ryuji Takenaka (Yokohama, JP); Koshiro Fukumoto (Yokohama, JP); Tomohide Akiyama (Yokohama, JP); Kazuhito Ohashi (Yokohama, JP); Yoshifumi Iwasaki (Yokohama, JP)
Assignee: MITSUBISHI HEAVY INDUSTRIES, LTD.
F02C9/28F05D2270/303
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Quick Facts
Patent No.
US 11,378,019
App. No.
16/466,088
Granted
Jul 5, 2022
Kind
B2
Abstract

A first fuel flow rate command value indicating a command value of a fuel input amount is calculated so that an output of a gas turbine matches a target output. An upper limit value of the first fuel flow rate command value is calculated based on a deviation obtained by subtracting, from an estimated value of a turbine inlet temperature of the gas turbine, a second limit value relating to the estimated value set such that the estimated value does not exceed a first limit value of the turbine inlet temperature.

Claims (27)

1. A gas turbine control apparatus comprising:

a governor control unit configured to calculate a governor fuel flow rate command value based on a frequency of a power system connected to a generator, the governor fuel flow rate command value indicating a first command value control signal output (CSO) of a fuel input amount that increases an output of the generator when the frequency decreases, the generator being configured to generate electric power by driving of a gas turbine;

a first CSO calculation unit configured to calculate a first fuel flow rate command value indicating a second command value CSO of the fuel input amount so that an output of the gas turbine matches a target output;

a second CSO calculation unit configured to calculate an upper limit value of the first fuel flow rate command value based on a deviation obtained by subtracting a second limit value from an estimated value of a turbine inlet temperature of the gas turbine, the second limit value relating to the estimated value and being set such that the estimated value does not exceed a first limit value of the turbine inlet temperature,

wherein:

the first CSO calculation unit is configured to compare the first fuel flow rate command value with the upper limit value to output a smaller value of those values as the first fuel flow rate command value; and

a command value selection unit configured to output, to a control valve for adjusting the fuel input amount, a smaller value of the governor fuel flow rate command value and the first fuel flow rate command value that is output by the first CSO calculation unit.

2. The gas turbine control apparatus according to claim 1 , wherein the second CSO calculation unit is configured to calculate an upper limit value that suppresses an increase in the upper limit value of the first fuel flow rate command value when the deviation is equal to or greater than a predetermined deviation in which the estimated value of the turbine inlet temperature is determined to exceed the first limit value.

3. The gas turbine control apparatus according to claim 2 , wherein the second CSO calculation unit is configured to fix the upper limit value of the first fuel flow rate command value to a currently calculated upper limit value when the deviation is equal to or greater than the predetermined deviation.

4. The gas turbine control apparatus according to claim 2 , wherein the second CSO calculation unit is configured to fix the upper limit value of the first fuel flow rate command value to a predetermined upper limit value when the deviation is equal to or greater than the predetermined deviation.

5. The gas turbine control apparatus according to claim 2 , wherein the second CSO calculation unit is configured to fix the upper limit value of the first fuel flow rate command value to a value corresponding to the deviation when the deviation is equal to or greater than the predetermined deviation.

6. The gas turbine control apparatus according to claim 1 , wherein the second CSO calculation unit is configured to calculate: (i) a second fuel flow rate command value by adding a predetermined value to a post-selection fuel flow rate command value that is currently selected among a plurality of fuel flow rate command values including the first fuel flow rate command value when the deviation is not equal to or greater than a predetermined deviation in which the estimated value of the turbine inlet temperature is determined to exceed the first limit value; and (ii) a third fuel flow rate command value that suppresses the post-selection fuel flow rate command value when the deviation is equal to or greater than the predetermined deviation.

7. A gas turbine control method comprising:

calculating, by a governor control unit, a governor fuel flow rate command value based on a frequency of a power system connected to a generator, the governor fuel flow rate command value indicating a first command value control signal output (CSO) of a fuel input amount that increases an output of the generator when the frequency decreases, the generator generating electric power by driving of a gas turbine;

calculating, by a first CSO calculation unit, a first fuel flow rate command value indicating a second command value CSO of the fuel input amount so that an output of the gas turbine matches a target output;

calculating, by a second CSO calculation unit, an upper limit value of the first fuel flow rate command value; and

outputting, by a command value selection unit to a control valve for adjusting the fuel input amount, a smaller value of the governor fuel flow rate command value and the first fuel flow rate command value that is output by the first CSO calculation unit,

wherein:

the second CSO calculation unit calculates the upper limit value of the first fuel flow rate command value based on a deviation obtained by subtracting a second limit value from an estimated value of a turbine inlet temperature of the gas turbine, the second limit value relating to the estimated value and being set such that the estimated value does not exceed a first limit value of the turbine inlet temperature; and

the first CSO calculation unit compares the first fuel flow rate command value with the upper limit value to output a smaller value of those values as the first fuel flow rate command value.

8. A gas turbine control method comprising:

calculating, by a governor control unit, a governor fuel flow rate command value based on a frequency of a power system connected to a generator, the governor fuel flow rate command value indicating a first command value control signal output (CSO) of a fuel input amount that increases an output of the generator when the frequency decreases, the generator generating electric power by driving of a gas turbine;

calculating, by a first CSO calculation unit, a first fuel flow rate command value indicating a second command value CSO of the fuel input amount so that an output of the gas turbine matches a target output;

calculating an upper limit value of the first fuel flow rate command value;

calculating, by a second CSO calculation unit, a deviation by subtracting a second limit value from an estimated value of a turbine inlet temperature of the gas turbine, the second limit value relating to the estimated value and being set such that the estimated value does not exceed a first limit value of the turbine inlet temperature, calculating a second fuel flow rate command value by adding a predetermined value to a post-selection fuel flow rate command value that is currently selected among a plurality of fuel flow rate command values including the first fuel flow rate command value when the deviation is not equal to or greater than a predetermined deviation in which the estimated value of the turbine inlet temperature is determined to exceed the first limit value, and calculating a third fuel flow rate command value that suppresses the post-selection fuel flow rate command value when the deviation is equal to or greater than the predetermined deviation; and

outputting, by a command value selection unit to a control valve for adjusting the fuel input amount, a smaller value of the governor fuel flow rate command value and the first fuel flow rate command value that is output by the first CSO calculation unit,

wherein the first CSO calculation unit compares the first fuel flow rate command value with the upper limit value to output a smaller value of those values as the first fuel flow rate command value.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 6, 2022
From: MITSUBISHI POWER, LTD.
To: MITSUBISHI HEAVY INDUSTRIES, LTD.
Reel/Frame 059620/0080 →
CHANGE OF NAME Recorded Nov 6, 2020
From: MITSUBISHI HITACHI POWER SYSTEMS, LTD.
To: MITSUBISHI POWER, LTD.
Reel/Frame 054344/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 3, 2019
From: TAKAKI, KAZUSHIGE; SAITO, AKIHIKO; TAKENAKA, RYUJI; FUKUMOTO, KOSHIRO; AKIYAMA, TOMOHIDE; OHASHI, KAZUHITO; IWASAKI, YOSHIFUMI
To: MITSUBISHI HITACHI POWER SYSTEMS, LTD.
Reel/Frame 049345/0747 →
Priority Claims (1)
JP JP2016-243359 · Dec 15, 2016 · national
Continuity (1)
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