Effects of duct burner on bottoming cycle in a combined cycle power plant

In this study, thermodynamic modeling and exergoeconomic assessment of a Combined Cycle Power Plant (CCPP) with a Duct Burner (DB) was performed. Obtaining an optimum condition for the performance of a CCPP, using a DB after gas turbine was investigated by various researchers. DB is installed betwee...

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Main Authors: Ganjehkaviri, A., Yusof, M., Mohd. Jaafar, M. N.
Format: Article
Published: Penerbit UTM Press 2017
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Online Access:http://eprints.utm.my/id/eprint/76763/
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85035145727&doi=10.11113%2fjt.v79.11894&partnerID=40&md5=361036e66db9c01bad55b2cc7a4b896e
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spelling my.utm.767632018-04-30T14:03:17Z http://eprints.utm.my/id/eprint/76763/ Effects of duct burner on bottoming cycle in a combined cycle power plant Ganjehkaviri, A. Yusof, M. Mohd. Jaafar, M. N. TJ Mechanical engineering and machinery In this study, thermodynamic modeling and exergoeconomic assessment of a Combined Cycle Power Plant (CCPP) with a Duct Burner (DB) was performed. Obtaining an optimum condition for the performance of a CCPP, using a DB after gas turbine was investigated by various researchers. DB is installed between gas turbine cycle and Rankine cycle of a CCPP to connect the gas turbine outlet to the Heat Recovery Steam Generator (HRSG) in order to produce steam for bottoming cycle. To find the irreversibility effect in each component of the bottoming cycle, a comprehensive parametric study is performed. In this regard, the effect of DB fuel flow rate on cost efficiency and economic of the bottoming cycle are investigated. To obtain a reasonable result, all the design parameters are kept constant while the DB fuel flow rate is varied. The results indicate that by increasing DB fuel flow rate, the investment cost and the efficiency of CCPP are increased. T-S diagram reveals that by using a DB, higher pressures steam in heat recovery steam generator has higher temperature while the low pressure is decreased. In addition, the exergy of flow gases in heat recovery steam generator increases. So, the exergy efficiency of the whole cycle was increased to around 6 percent, while the cost of the plant reduced by one percent. Penerbit UTM Press 2017 Article PeerReviewed Ganjehkaviri, A. and Yusof, M. and Mohd. Jaafar, M. N. (2017) Effects of duct burner on bottoming cycle in a combined cycle power plant. Jurnal Teknologi, 79 (7-3). pp. 27-32. ISSN 0127-9696 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85035145727&doi=10.11113%2fjt.v79.11894&partnerID=40&md5=361036e66db9c01bad55b2cc7a4b896e DOI:10.11113/jt.v79.11894
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Ganjehkaviri, A.
Yusof, M.
Mohd. Jaafar, M. N.
Effects of duct burner on bottoming cycle in a combined cycle power plant
description In this study, thermodynamic modeling and exergoeconomic assessment of a Combined Cycle Power Plant (CCPP) with a Duct Burner (DB) was performed. Obtaining an optimum condition for the performance of a CCPP, using a DB after gas turbine was investigated by various researchers. DB is installed between gas turbine cycle and Rankine cycle of a CCPP to connect the gas turbine outlet to the Heat Recovery Steam Generator (HRSG) in order to produce steam for bottoming cycle. To find the irreversibility effect in each component of the bottoming cycle, a comprehensive parametric study is performed. In this regard, the effect of DB fuel flow rate on cost efficiency and economic of the bottoming cycle are investigated. To obtain a reasonable result, all the design parameters are kept constant while the DB fuel flow rate is varied. The results indicate that by increasing DB fuel flow rate, the investment cost and the efficiency of CCPP are increased. T-S diagram reveals that by using a DB, higher pressures steam in heat recovery steam generator has higher temperature while the low pressure is decreased. In addition, the exergy of flow gases in heat recovery steam generator increases. So, the exergy efficiency of the whole cycle was increased to around 6 percent, while the cost of the plant reduced by one percent.
format Article
author Ganjehkaviri, A.
Yusof, M.
Mohd. Jaafar, M. N.
author_facet Ganjehkaviri, A.
Yusof, M.
Mohd. Jaafar, M. N.
author_sort Ganjehkaviri, A.
title Effects of duct burner on bottoming cycle in a combined cycle power plant
title_short Effects of duct burner on bottoming cycle in a combined cycle power plant
title_full Effects of duct burner on bottoming cycle in a combined cycle power plant
title_fullStr Effects of duct burner on bottoming cycle in a combined cycle power plant
title_full_unstemmed Effects of duct burner on bottoming cycle in a combined cycle power plant
title_sort effects of duct burner on bottoming cycle in a combined cycle power plant
publisher Penerbit UTM Press
publishDate 2017
url http://eprints.utm.my/id/eprint/76763/
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85035145727&doi=10.11113%2fjt.v79.11894&partnerID=40&md5=361036e66db9c01bad55b2cc7a4b896e
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score 13.209306