Exergy analysis of coupling MED-TVC to Neka combined cycle power plant

Freshwater generation is always one of the most important issues in human communities coincided with population increase in different areas, using water desalination technology can be one of the most effective and useful method in utilizing power plants heat recovery. Iran has a high potential to us...

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Main Authors: karim maghsoudi mehrabani, majid aliasghari, abdollah mehrpanahi
Format: Article
Language:fas
Published: Semnan University 2017-08-01
Series:مجله مدل سازی در مهندسی
Subjects:
Online Access:https://modelling.semnan.ac.ir/article_2538_d23d92fe85ef9e9054e55f3643585ec1.pdf
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author karim maghsoudi mehrabani
majid aliasghari
abdollah mehrpanahi
author_facet karim maghsoudi mehrabani
majid aliasghari
abdollah mehrpanahi
author_sort karim maghsoudi mehrabani
collection DOAJ
description Freshwater generation is always one of the most important issues in human communities coincided with population increase in different areas, using water desalination technology can be one of the most effective and useful method in utilizing power plants heat recovery. Iran has a high potential to use this technology due to the shortage of fresh water resources on the one hand and several thermal power plants in the coastal areas of North and South on the other hand. In this study, exergy destruction rate in different components of the cycle and also the rate of profit and loss resulting from coupling desalination to Neka power plant were studied according to the project of Caspian Sea water transfer to the central plateau of Iran and the necessity of water desalination before transferring. Results showed that the maximum exergy destruction cost occurred in the thermo-compressor and then in condenser. also if the flow of low pressure turbine used in MED-TVC can product7215m3/day freshwater but this decrease in LP turbine flow, decreased 6.67% of the total power and 0.9 % thermal efficiency of a power plant.
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spelling doaj.art-1f5182bdf81f47c1b044bf74566d3ccd2024-02-23T19:03:17ZfasSemnan Universityمجله مدل سازی در مهندسی2008-48542783-25382017-08-01154911112410.22075/jme.2017.25382538Exergy analysis of coupling MED-TVC to Neka combined cycle power plantkarim maghsoudi mehrabani0majid aliasghari1abdollah mehrpanahi2دانشگاه تربیت دبیر شهید رجاییدانشگاه تربیت دبیر شهید رجاییدانشگاه تربیت دبیر شهید رجاییFreshwater generation is always one of the most important issues in human communities coincided with population increase in different areas, using water desalination technology can be one of the most effective and useful method in utilizing power plants heat recovery. Iran has a high potential to use this technology due to the shortage of fresh water resources on the one hand and several thermal power plants in the coastal areas of North and South on the other hand. In this study, exergy destruction rate in different components of the cycle and also the rate of profit and loss resulting from coupling desalination to Neka power plant were studied according to the project of Caspian Sea water transfer to the central plateau of Iran and the necessity of water desalination before transferring. Results showed that the maximum exergy destruction cost occurred in the thermo-compressor and then in condenser. also if the flow of low pressure turbine used in MED-TVC can product7215m3/day freshwater but this decrease in LP turbine flow, decreased 6.67% of the total power and 0.9 % thermal efficiency of a power plant.https://modelling.semnan.ac.ir/article_2538_d23d92fe85ef9e9054e55f3643585ec1.pdfmedexergy destructionthermo-compressorcombined cycle powerplantlp turbine
spellingShingle karim maghsoudi mehrabani
majid aliasghari
abdollah mehrpanahi
Exergy analysis of coupling MED-TVC to Neka combined cycle power plant
مجله مدل سازی در مهندسی
med
exergy destruction
thermo-compressor
combined cycle powerplant
lp turbine
title Exergy analysis of coupling MED-TVC to Neka combined cycle power plant
title_full Exergy analysis of coupling MED-TVC to Neka combined cycle power plant
title_fullStr Exergy analysis of coupling MED-TVC to Neka combined cycle power plant
title_full_unstemmed Exergy analysis of coupling MED-TVC to Neka combined cycle power plant
title_short Exergy analysis of coupling MED-TVC to Neka combined cycle power plant
title_sort exergy analysis of coupling med tvc to neka combined cycle power plant
topic med
exergy destruction
thermo-compressor
combined cycle powerplant
lp turbine
url https://modelling.semnan.ac.ir/article_2538_d23d92fe85ef9e9054e55f3643585ec1.pdf
work_keys_str_mv AT karimmaghsoudimehrabani exergyanalysisofcouplingmedtvctonekacombinedcyclepowerplant
AT majidaliasghari exergyanalysisofcouplingmedtvctonekacombinedcyclepowerplant
AT abdollahmehrpanahi exergyanalysisofcouplingmedtvctonekacombinedcyclepowerplant