PARAMETRIC ANALYSIS OF A GAS-STEAM PLANT SCHEME USING A MATHEMATICAL MODEL

The relevance of the topic is caused by the need for a complex of scientific research on the development and optimization of thermal circuits and calculation methods for gas-steam installations. Gas-steam plants are a promising direction for increasing the efficiency of power plants based on gas tur...

Full description

Bibliographic Details
Main Authors: Nikolay N. Galashov, Alexander A. Tubolev, Alexander A. Minor, Albina I. Bannova
Format: Article
Language:Russian
Published: Tomsk Polytechnic University 2021-12-01
Series:Известия Томского политехнического университета: Инжиниринг георесурсов
Subjects:
Online Access:http://izvestiya.tpu.ru/archive/article/view/3323/2610
_version_ 1811185488711647232
author Nikolay N. Galashov
Alexander A. Tubolev
Alexander A. Minor
Albina I. Bannova
author_facet Nikolay N. Galashov
Alexander A. Tubolev
Alexander A. Minor
Albina I. Bannova
author_sort Nikolay N. Galashov
collection DOAJ
description The relevance of the topic is caused by the need for a complex of scientific research on the development and optimization of thermal circuits and calculation methods for gas-steam installations. Gas-steam plants are a promising direction for increasing the efficiency of power plants based on gas turbine engines with environmental and energy injection of water vapor into the combustion chamber. The main aim of the research is to improve the calculation methodology of gas turbine units with steam injection for the study of issues of increasing the efficiency of electric and thermal energy generation in order to reduce natural gas consumption, as well as to improve thermal schemes and optimize the parameters of gas-steam installations. Objects: combined gas-steam installations based on gas turbine installations with steam injection into the combustion chamber. Methods: numerical methods of research by mathematical modeling of systems and elements of gas-steam installations based on material and energy balances. Results. A mathematical model has been developed for calculating the energy characteristics of a gas-steam installation, taking into account changes in input parameters in a wide range. The influence of the gas temperature at the outlet of the combustion chamber and the compression ratio in the compressor on the main energy characteristics of a gas turbine installation without steam injection and with injection into the combustion chamber is analyzed. It is shown that steam injection can increase the efficiency of a gas turbine installation by up to 9 %, while the consumption of injected steam is significantly reduced with an increase in the temperature of the gases at the outlet of the combustion chamber and the compression ratio in the compressor. Also, steam injection significantly reduces the excess air coefficient in the combustion chamber and the temperature of the gases leaving the waste boiler. At the same time, the specific power of electricity generation increases by about 1,5...2,0 times compared to a gas turbine installation without injection. It is established that the need to ensure temperature pressures in the heat recovery boiler significantly limits the range of operating modes of the gas-steam plant in terms of the compression ratio in the compressor.
first_indexed 2024-04-11T13:30:12Z
format Article
id doaj.art-a47d6fff5d6e464ab713471355204c45
institution Directory Open Access Journal
issn 2500-1019
2413-1830
language Russian
last_indexed 2024-04-11T13:30:12Z
publishDate 2021-12-01
publisher Tomsk Polytechnic University
record_format Article
series Известия Томского политехнического университета: Инжиниринг георесурсов
spelling doaj.art-a47d6fff5d6e464ab713471355204c452022-12-22T04:21:50ZrusTomsk Polytechnic UniversityИзвестия Томского политехнического университета: Инжиниринг георесурсов2500-10192413-18302021-12-013321212413510.18799/24131830/2021/12/3323PARAMETRIC ANALYSIS OF A GAS-STEAM PLANT SCHEME USING A MATHEMATICAL MODELNikolay N. Galashov0Alexander A. Tubolev1Alexander A. Minor2Albina I. Bannova3National Research Tomsk Polytechnic UniversityNational Research Tomsk Polytechnic UniversityNational Research Tomsk Polytechnic UniversityNational Research Tomsk Polytechnic UniversityThe relevance of the topic is caused by the need for a complex of scientific research on the development and optimization of thermal circuits and calculation methods for gas-steam installations. Gas-steam plants are a promising direction for increasing the efficiency of power plants based on gas turbine engines with environmental and energy injection of water vapor into the combustion chamber. The main aim of the research is to improve the calculation methodology of gas turbine units with steam injection for the study of issues of increasing the efficiency of electric and thermal energy generation in order to reduce natural gas consumption, as well as to improve thermal schemes and optimize the parameters of gas-steam installations. Objects: combined gas-steam installations based on gas turbine installations with steam injection into the combustion chamber. Methods: numerical methods of research by mathematical modeling of systems and elements of gas-steam installations based on material and energy balances. Results. A mathematical model has been developed for calculating the energy characteristics of a gas-steam installation, taking into account changes in input parameters in a wide range. The influence of the gas temperature at the outlet of the combustion chamber and the compression ratio in the compressor on the main energy characteristics of a gas turbine installation without steam injection and with injection into the combustion chamber is analyzed. It is shown that steam injection can increase the efficiency of a gas turbine installation by up to 9 %, while the consumption of injected steam is significantly reduced with an increase in the temperature of the gases at the outlet of the combustion chamber and the compression ratio in the compressor. Also, steam injection significantly reduces the excess air coefficient in the combustion chamber and the temperature of the gases leaving the waste boiler. At the same time, the specific power of electricity generation increases by about 1,5...2,0 times compared to a gas turbine installation without injection. It is established that the need to ensure temperature pressures in the heat recovery boiler significantly limits the range of operating modes of the gas-steam plant in terms of the compression ratio in the compressor.http://izvestiya.tpu.ru/archive/article/view/3323/2610gas turbine plantgas-steam plantpower steam injectionecological steam injectionwaste heat boilercombustion productsflue gases
spellingShingle Nikolay N. Galashov
Alexander A. Tubolev
Alexander A. Minor
Albina I. Bannova
PARAMETRIC ANALYSIS OF A GAS-STEAM PLANT SCHEME USING A MATHEMATICAL MODEL
Известия Томского политехнического университета: Инжиниринг георесурсов
gas turbine plant
gas-steam plant
power steam injection
ecological steam injection
waste heat boiler
combustion products
flue gases
title PARAMETRIC ANALYSIS OF A GAS-STEAM PLANT SCHEME USING A MATHEMATICAL MODEL
title_full PARAMETRIC ANALYSIS OF A GAS-STEAM PLANT SCHEME USING A MATHEMATICAL MODEL
title_fullStr PARAMETRIC ANALYSIS OF A GAS-STEAM PLANT SCHEME USING A MATHEMATICAL MODEL
title_full_unstemmed PARAMETRIC ANALYSIS OF A GAS-STEAM PLANT SCHEME USING A MATHEMATICAL MODEL
title_short PARAMETRIC ANALYSIS OF A GAS-STEAM PLANT SCHEME USING A MATHEMATICAL MODEL
title_sort parametric analysis of a gas steam plant scheme using a mathematical model
topic gas turbine plant
gas-steam plant
power steam injection
ecological steam injection
waste heat boiler
combustion products
flue gases
url http://izvestiya.tpu.ru/archive/article/view/3323/2610
work_keys_str_mv AT nikolayngalashov parametricanalysisofagassteamplantschemeusingamathematicalmodel
AT alexanderatubolev parametricanalysisofagassteamplantschemeusingamathematicalmodel
AT alexanderaminor parametricanalysisofagassteamplantschemeusingamathematicalmodel
AT albinaibannova parametricanalysisofagassteamplantschemeusingamathematicalmodel