Effects Of Cycle Peak Temperature Ratio On The Performance Of Combined Cycle Power Plant

Combined cycle power plant (CCPP) is currently the most promising technology to generate power at higher plant thermal efficiencies. The effects of the cycle peak temperature ratio on the improvement of the performance of the combined cycle power plant had been proposed. The MATLAB code was develope...

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Main Authors: Ibrahim, Thamir K., M. M., Rahman
Format: Article
Language:English
Published: Universiti Malaysia Pahang 2016
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/16177/1/fkm-2016-8_Ibrahim%20and%20Rahman.pdf
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author Ibrahim, Thamir K.
M. M., Rahman
author_facet Ibrahim, Thamir K.
M. M., Rahman
author_sort Ibrahim, Thamir K.
collection UMP
description Combined cycle power plant (CCPP) is currently the most promising technology to generate power at higher plant thermal efficiencies. The effects of the cycle peak temperature ratio on the improvement of the performance of the combined cycle power plant had been proposed. The MATLAB code was developed to utilize the performance of the CCPP. The results of this study showed that the overall thermal efficiency increased with the increase of cycle peak temperature ratio and decreased with the increase of air fuel ratio. Also, the increase of the cycle peak temperature ratio as well as the increase of the isentropic compressor efficiency led to the increase of the total power output. The thermal efficiencies for CCPP were higher compared to the gas turbine power plant
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spelling UMPir161772018-09-28T07:41:55Z http://umpir.ump.edu.my/id/eprint/16177/ Effects Of Cycle Peak Temperature Ratio On The Performance Of Combined Cycle Power Plant Ibrahim, Thamir K. M. M., Rahman TS Manufactures Combined cycle power plant (CCPP) is currently the most promising technology to generate power at higher plant thermal efficiencies. The effects of the cycle peak temperature ratio on the improvement of the performance of the combined cycle power plant had been proposed. The MATLAB code was developed to utilize the performance of the CCPP. The results of this study showed that the overall thermal efficiency increased with the increase of cycle peak temperature ratio and decreased with the increase of air fuel ratio. Also, the increase of the cycle peak temperature ratio as well as the increase of the isentropic compressor efficiency led to the increase of the total power output. The thermal efficiencies for CCPP were higher compared to the gas turbine power plant Universiti Malaysia Pahang 2016 Article PeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/16177/1/fkm-2016-8_Ibrahim%20and%20Rahman.pdf Ibrahim, Thamir K. and M. M., Rahman (2016) Effects Of Cycle Peak Temperature Ratio On The Performance Of Combined Cycle Power Plant. International Journal of Automotive and Mechanical Engineering (IJAME), 13 (2). pp. 3389-3400. ISSN 1985-9325(Print); 2180-1606 (Online). (Published) https://doi.org/10.15282/ijame.13.2.2016.8.0280 DOI: 10.15282/ijame.13.2.2016.8.0280
spellingShingle TS Manufactures
Ibrahim, Thamir K.
M. M., Rahman
Effects Of Cycle Peak Temperature Ratio On The Performance Of Combined Cycle Power Plant
title Effects Of Cycle Peak Temperature Ratio On The Performance Of Combined Cycle Power Plant
title_full Effects Of Cycle Peak Temperature Ratio On The Performance Of Combined Cycle Power Plant
title_fullStr Effects Of Cycle Peak Temperature Ratio On The Performance Of Combined Cycle Power Plant
title_full_unstemmed Effects Of Cycle Peak Temperature Ratio On The Performance Of Combined Cycle Power Plant
title_short Effects Of Cycle Peak Temperature Ratio On The Performance Of Combined Cycle Power Plant
title_sort effects of cycle peak temperature ratio on the performance of combined cycle power plant
topic TS Manufactures
url http://umpir.ump.edu.my/id/eprint/16177/1/fkm-2016-8_Ibrahim%20and%20Rahman.pdf
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