Parametric analysis and optimization of 660 MW supercritical power plant
The newly set up power plant has been committed to fulfilling the power supply demand of the world. Therefore, optimizing operating variables within constraints of varying power demand becomes necessary. The research aims to identify and optimize several parameters influencing the performance and ef...
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my.uniten.dspace-339912024-10-14T11:17:36Z Parametric analysis and optimization of 660 MW supercritical power plant Chandrakant Nikam K. Jathar L. Shelare S.D. Shahapurkar K. Dambhare S. Soudagar M.E.M. Mubarak N.M. Ahamad T. Kalam M.A. 57204728700 57218476565 57195928420 57196344622 55868792900 57194384501 36634677600 12790015800 55103352400 Cost of electricity Exergy efficiency Fossil fuel-fired supercritical plant Particle swarm optimization Plant efficiency Coal Cost benefit analysis Decision making Economic analysis Electric power systems Fossil fuel power plants Multiobjective optimization Particle swarm optimization (PSO) Steam power plants Cost of electricity Exergy efficiencies Fossil fuel-fired supercritical plant Objective functions Particle swarm Particle swarm optimization Plant efficiency Supercritical Supercritical power plant Swarm optimization demand analysis energy efficiency exergy fossil fuel fuel consumption optimization parameterization performance assessment power plant Exergy The newly set up power plant has been committed to fulfilling the power supply demand of the world. Therefore, optimizing operating variables within constraints of varying power demand becomes necessary. The research aims to identify and optimize several parameters influencing the performance and efficiency of a 660 MW supercritical power plant at different operating conditions, such as steam temperature, pressure, feedwater flow rate, and fuel consumption. Ultimately, the research aims to contribute to developing sustainable and environmentally friendly power generation technologies. The present study covers the multi-objective optimization of a 660 MW capacity fossil fuel-fired SUPP. The overall plant efficiency, cost of electricity, and exergetic efficiency are taken as objective functions. The Particle Swarm Optimization (PSO) technique and a semi-empirical model of energy, economic, and exergy analysis of fossil fuel-fired SUPP have been employed. The varying power outputs, coal calorific value, amount of coal consumption, inlet temperature, and pressure conditions of turbines set are decision variables taken for the study. The parametric study was carried out with the variation in plant load and mass of coal consumption concerning the variation of the objective function. The lower temperature at the inlet of the low-pressure turbine is preferred for lowing the cost of electricity. The maximum value of plant efficiency of 41.643% and exergy efficiency of 39.834% with a minimum cost of electricity of 3.1456 INR/Unit have been evaluated using multi-objective PSO. The outcome of the present study is that the optimized value of decision variables will reduce the dependency on high-grade coal from an energy, exergy, and economic point of view. The outcome of the present study will explore the scope for future researchers and engineers. � 2023 Elsevier Ltd Final 2024-10-14T03:17:36Z 2024-10-14T03:17:36Z 2023 Article 10.1016/j.energy.2023.128165 2-s2.0-85166755244 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85166755244&doi=10.1016%2fj.energy.2023.128165&partnerID=40&md5=0c5b3f6a0dc46e6093f2312c36815a5d https://irepository.uniten.edu.my/handle/123456789/33991 280 128165 Elsevier Ltd Scopus |
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Cost of electricity Exergy efficiency Fossil fuel-fired supercritical plant Particle swarm optimization Plant efficiency Coal Cost benefit analysis Decision making Economic analysis Electric power systems Fossil fuel power plants Multiobjective optimization Particle swarm optimization (PSO) Steam power plants Cost of electricity Exergy efficiencies Fossil fuel-fired supercritical plant Objective functions Particle swarm Particle swarm optimization Plant efficiency Supercritical Supercritical power plant Swarm optimization demand analysis energy efficiency exergy fossil fuel fuel consumption optimization parameterization performance assessment power plant Exergy |
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Cost of electricity Exergy efficiency Fossil fuel-fired supercritical plant Particle swarm optimization Plant efficiency Coal Cost benefit analysis Decision making Economic analysis Electric power systems Fossil fuel power plants Multiobjective optimization Particle swarm optimization (PSO) Steam power plants Cost of electricity Exergy efficiencies Fossil fuel-fired supercritical plant Objective functions Particle swarm Particle swarm optimization Plant efficiency Supercritical Supercritical power plant Swarm optimization demand analysis energy efficiency exergy fossil fuel fuel consumption optimization parameterization performance assessment power plant Exergy Chandrakant Nikam K. Jathar L. Shelare S.D. Shahapurkar K. Dambhare S. Soudagar M.E.M. Mubarak N.M. Ahamad T. Kalam M.A. Parametric analysis and optimization of 660 MW supercritical power plant |
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The newly set up power plant has been committed to fulfilling the power supply demand of the world. Therefore, optimizing operating variables within constraints of varying power demand becomes necessary. The research aims to identify and optimize several parameters influencing the performance and efficiency of a 660 MW supercritical power plant at different operating conditions, such as steam temperature, pressure, feedwater flow rate, and fuel consumption. Ultimately, the research aims to contribute to developing sustainable and environmentally friendly power generation technologies. The present study covers the multi-objective optimization of a 660 MW capacity fossil fuel-fired SUPP. The overall plant efficiency, cost of electricity, and exergetic efficiency are taken as objective functions. The Particle Swarm Optimization (PSO) technique and a semi-empirical model of energy, economic, and exergy analysis of fossil fuel-fired SUPP have been employed. The varying power outputs, coal calorific value, amount of coal consumption, inlet temperature, and pressure conditions of turbines set are decision variables taken for the study. The parametric study was carried out with the variation in plant load and mass of coal consumption concerning the variation of the objective function. The lower temperature at the inlet of the low-pressure turbine is preferred for lowing the cost of electricity. The maximum value of plant efficiency of 41.643% and exergy efficiency of 39.834% with a minimum cost of electricity of 3.1456 INR/Unit have been evaluated using multi-objective PSO. The outcome of the present study is that the optimized value of decision variables will reduce the dependency on high-grade coal from an energy, exergy, and economic point of view. The outcome of the present study will explore the scope for future researchers and engineers. � 2023 Elsevier Ltd |
author2 |
57204728700 |
author_facet |
57204728700 Chandrakant Nikam K. Jathar L. Shelare S.D. Shahapurkar K. Dambhare S. Soudagar M.E.M. Mubarak N.M. Ahamad T. Kalam M.A. |
format |
Article |
author |
Chandrakant Nikam K. Jathar L. Shelare S.D. Shahapurkar K. Dambhare S. Soudagar M.E.M. Mubarak N.M. Ahamad T. Kalam M.A. |
author_sort |
Chandrakant Nikam K. |
title |
Parametric analysis and optimization of 660 MW supercritical power plant |
title_short |
Parametric analysis and optimization of 660 MW supercritical power plant |
title_full |
Parametric analysis and optimization of 660 MW supercritical power plant |
title_fullStr |
Parametric analysis and optimization of 660 MW supercritical power plant |
title_full_unstemmed |
Parametric analysis and optimization of 660 MW supercritical power plant |
title_sort |
parametric analysis and optimization of 660 mw supercritical power plant |
publisher |
Elsevier Ltd |
publishDate |
2024 |
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1814061098343596032 |
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