EP0605156A2

Method of effecting start-up of a cold steam turbine system in a combined cycle plant.

Abstract

In a combined cycle power generation system which includes a gas turbine; a steam turbine; and a heat recovery steam generator which includes a superheater section and an evaporator section, and wherein condensate from the steam turbine is reheated in the heat recovery steam generator by exhaust gas from the gas turbine and returned via a main steam outlet to the steam turbine, a method of effecting start-up of the steam turbine comprising the steps of: a) dumping a portion of the gas turbine exhaust gas to atmosphere, while simultaneously introducing a remaining portion of the gas turbine exhaust gas to the heat recovery steam generator;b) with the main steam outlet from the heat recovery steam generator closed, extracting steam from an intermediate location in the superheater and supplying the extracted steam to the steam turbine at a temperature between about 550-1000°F; and, after the steam turbine is started and a warm-up cycle completed,c) terminating the extraction of steam from the intermediate location in the superheater and opening the main steam outlet from the heat recovery steam generator.

EP0605156A2, drawing sheet 1
Sheet 1 of 2

Term

Term ended

Projected expiry passed 17 December 2013, 12.8 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

15 claims: 3 independent, 12 dependent

  1. 1
    In a combined cycle power generation system which includes a gas turbine; a steam turbine; and a heat recovery steam generator which includes a superheater section and an evaporator section, and wherein condensate from the steam turbine is reheated in the heat recovery steam generator by exhaust gas from the gas turbine and returned via a main steam outlet to the steam turbine, a method of effecting start-up of the steam turbine comprising the steps of:a) passing gas turbine exhaust gas through the heat recovery steam generator;b) extracting steam from the heat recovery steam generator from a location between the evaporator and superheater;c) controlling the temperature of the extracted steam to minimize a temperature differential between the extracted steam and metal components of the steam turbine;and d) utilizing the extracted steam, at controlled temperature and pressure, to start up the steam turbine.
  2. 6
    In a combined cycle power generation system which includes a gas turbine; a steam turbine; and a heat recovery steam generator which includes a superheater section and an evaporator section, and wherein condensate from the steam turbine is reheated in the heat recovery steam generator by exhaust gas from the gas turbine and returned via a main steam outlet to the steam turbine, a method of effecting start-up of the steam turbine comprising the steps of:a) dumping a portion of the gas turbine exhaust gas to atmosphere, while simultaneously introducing a remaining portion of the gas turbine exhaust gas to the heat recovery steam generator;b) with the main steam outlet from the heat recovery steam generator closed, extracting steam from an intermediate location in the superheater and supplying the extracted steam to the steam turbine at a temperature between about 550-1000°F;and, after the steam turbine is started and a warm-up cycle completed, c) terminating the extraction of steam from the intermediate location in the superheater and opening the main steam outlet from the heat recovery steam generator.
  3. 12
    In a combined cycle power generation system which includes a gas turbine; a steam turbine; and a heat recovery steam generator which includes a superheater section and an evaporator section, and wherein during normal operation condensate from the steam turbine is reheated in the heat recovery steam generator by exhaust gas from the gas turbine and returned via a main steam outlet to the steam turbine, a method of effecting start-up of the steam turbine comprising the steps of:a) introducing the gas turbine exhaust gas to the heat recovery steam generator;b) with the main steam outlet from the heat recovery steam generator closed, extracting steam from an intermediate location in the superheater and supplying the extracted steam to the stern turbine at a temperature at or below normal steam inlet temperature;and after start up, c) terminating the extraction of steam from the intermediate location in the superheater and opening the main steam outlet from the heat recovery steam generator.