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Modelling and exergoeconomic-environmental analysis of combined cycle power generation system using flameless burner for steam generation

Hosseini, S. E. and Barzegaravval, H. and Ganjehkaviri, A. and Wahid, M. A. and Mohd. Jaafar, M. N. (2017) Modelling and exergoeconomic-environmental analysis of combined cycle power generation system using flameless burner for steam generation. Energy Conversion and Management, 135 . pp. 362-372. ISSN 0196-8904

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Abstract

To have an optimum condition for the performance of a combined cycle power generation, using supplementary firing system after gas turbine was investigated by various researchers. Since the temperature of turbine exhaust is higher than auto-ignition temperature of the fuel in optimum condition, using flameless burner is modelled in this paper. Flameless burner is installed between gas turbine cycle and Rankine cycle of a combined cycle power plant which one end is connected to the outlet of gas turbine (as primary combustion oxidizer) and the other end opened to the heat recovery steam generator. Then, the exergoeconomic-environmental analysis of the proposed model is evaluated. Results demonstrate that efficiency of the combined cycle power plant increases about 6% and CO2emission reduces up to 5.63% in this proposed model. It is found that the variation in the cost is less than 1% due to the fact that a cost constraint is implemented to be equal or lower than the design point cost. Moreover, exergy of flow gases increases in all points except in heat recovery steam generator. Hence, available exergy for work production in both gas cycle and steam cycle will increase in new model.

Item Type:Article
Uncontrolled Keywords:gas turbine, auto-ignition temperature
Subjects:T Technology > TJ Mechanical engineering and machinery
Divisions:Mechanical Engineering
ID Code:76124
Deposited By: Widya Wahid
Deposited On:30 May 2018 04:22
Last Modified:30 May 2018 04:22

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