METHOD OF COMBINED GENERATING ELECTRIC POWER, HEAT AND COLD IN COMBINED-CYCLE PLANT WITH STEAM INJECTION AND COMBINED-CYCLE PLANT FOR ITS IMPLEMENTATION Russian patent published in 2017 - IPC F01K21/04 F02C3/30 F25B29/00 

Abstract RU 2611921 C2

FIELD: power engineering.

SUBSTANCE: invention relates to power engineering and can be used in designing new and improving existing combined-cycle plants (CCP) of contact type (CCP-C) intended for generating electric power and heat, as well as a power drive, for example, for compressors of gas-compressor stations of gas mains. Method of combined generating electric power, heat and cold in a combined-cycle plant with steam injection involves air compression in a multistage compressor with intermediate cooling air with heated water in a contact heat exchanger. Supply of a compressed steam-air mixture into the combustion chamber of the gas turbine with injection of additional steam produced in the exhaust-heat boiler. Expansion of the steam-gas mixture in the high-pressure turbine. Cooling the steam-gas mixture in the exhaust-heat boiler and in the gas cooler for heating delivery water of the heat and cold water supply system due to heat of steam condensation from the steam-gas mixture. System of condensed moisture removal from the steam-gas mixture, further delivery of dried steam-gas mixture into the expander while collecting the formed condensate and returning it into the steam-gas cycle. Pressure behind the high pressure-turbine is maintained at the level of 0.35-0.5 MPa, sufficient for heating the circulating water in the heat and cold water supply system up to the temperature of 100–110 °C.

EFFECT: simpler technique of combined generating power, heat and cold, implementation of potential condensation of water vapours at a temperature level sufficient for heating the delivery water up to standard parameters of the heating system.

5 cl, 1 dwg

Similar patents RU2611921C2

Title Year Author Number
PROCESS AND COMBINED-CYCLE PLANT FOR HEAT RECOVERY IN COMBINED CYCLE 2001
  • Shadek E.G.
  • Shterenberg V.Ja.
  • Maslennikov V.M.
  • Tsalko Eh.A.
  • Vyskubenko Ju.A.
  • Kashfraziev Ju.A.
  • Lavrov V.S.
RU2179248C1
METHOD OF AND PLANT FOR RECOVERY OF HEAT IN CONTACT-TYPE STEAM-GAS PLANT 2002
  • Shadek E.G.
  • Shterenberg V.Ja.
  • Maslennikov V.M.
  • Iki Norikhiko
  • Tsalko Eh.A.
  • Vyskubenko Ju.A.
  • Kashfraziev Ju.A.
RU2211343C1
METHOD OF COMBINED-CYCLE POWER PLANT EFFICIENCY INCREASING 2005
  • Kirilenko Viktor Nikolaevich
RU2334112C2
GAS-STEAM POWER PLANT 2021
  • Sheludko Leonid Pavlovich
  • Livshits Mikhail Yurevich
  • Pleshivtseva Yuliya Edgarovna
RU2791638C1
COMBINED-CYCLE PLANT 1995
  • Burlov V.Ju.
  • D'Jakov A.F.
  • Evdokimov A.F.
  • Mironov V.Ja.
RU2101527C1
COMBINED-CYCLE PLANT WITH A SEMI-CLOSED GAS TURBINE PLANT 2022
  • Biryuk Vladimir Vasilevich
  • Sheludko Leonid Pavlovich
  • Livshits Mikhail Yurevich
  • Larin Evgenij Aleksandrovich
  • Shimanova Aleksandra Borisovna
  • Shimanov Artem Andreevich
RU2795147C1
COMBINED-CYCLE PLANT 1999
  • Sherstobitov I.V.
  • Tolstenko V.D.
  • Galushko V.F.
RU2163671C1
COMBINED-CYCLE PLANT WITH DEEP WASTE GAS HEAT RECOVERY 2018
  • Shadek Evgenij Glebovich
RU2700843C1
STEAM AND GAS PLANT WITH COMBUSTION CHAMBERS OF TWO PRESSURES 2011
  • Vertkin Mikhail Arkad'Evich
RU2473817C1
COMBINED-CYCLE PLANT BASED ON HEAT TRANSFORMER WITH INJECTION OF STEAM INTO GAS PATH 2015
  • Shadek Evgenij Glebovich
RU2607574C2

RU 2 611 921 C2

Authors

Dates

2017-03-01Published

2013-06-28Filed