Analysis of CHP plant in cement production industries for optimization of energy consumption
In this study, two of the most popular power generation cycles are analyzed using EES (Engineering Equation Solver). Cycles are evaluated by their efficiencies based on receiving different gas temperatures extracted from a Gorgo-flame cement rotary kiln. Results show that employing CHP technology in...
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Iranian Society of Heating, Refrigeration and Air Conditioning Engineers (IRSHRAE)
2019-03-01
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Online Access: | http://www.jrenew.ir/article_82125_ac6e7acaec9b92b64371cae68058750b.pdf |
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doaj-7b9cdd38476542f1847711b411884dab2021-04-06T14:56:56ZfasIranian Society of Heating, Refrigeration and Air Conditioning Engineers (IRSHRAE)انرژیهای تجدیدپذیر و نو2423-49312676-29942019-03-0161748382125Analysis of CHP plant in cement production industries for optimization of energy consumptionMehran Alipour0Zahra Baniamerian1Department of Mechanical Engineering, Tafresh University, Tafresh, IranDepartment of Mechanical Engineering, Tafresh University, Tafresh, IranIn this study, two of the most popular power generation cycles are analyzed using EES (Engineering Equation Solver). Cycles are evaluated by their efficiencies based on receiving different gas temperatures extracted from a Gorgo-flame cement rotary kiln. Results show that employing CHP technology in cement production plants will efficiently optimizes energy consumptions beside its effectiveness in decreasing environmental pollutions. Based on the obtained results, the steam cycle was more efficient and saves more amounts of energy. In study the efficiency of the cycles, the difference is observed between 5-20% at the same temperature.http://www.jrenew.ir/article_82125_ac6e7acaec9b92b64371cae68058750b.pdfchpsimulationrotary kilnbrayton gas cycle |
collection |
DOAJ |
language |
fas |
format |
Article |
sources |
DOAJ |
author |
Mehran Alipour Zahra Baniamerian |
spellingShingle |
Mehran Alipour Zahra Baniamerian Analysis of CHP plant in cement production industries for optimization of energy consumption انرژیهای تجدیدپذیر و نو chp simulation rotary kiln brayton gas cycle |
author_facet |
Mehran Alipour Zahra Baniamerian |
author_sort |
Mehran Alipour |
title |
Analysis of CHP plant in cement production industries for optimization of energy consumption |
title_short |
Analysis of CHP plant in cement production industries for optimization of energy consumption |
title_full |
Analysis of CHP plant in cement production industries for optimization of energy consumption |
title_fullStr |
Analysis of CHP plant in cement production industries for optimization of energy consumption |
title_full_unstemmed |
Analysis of CHP plant in cement production industries for optimization of energy consumption |
title_sort |
analysis of chp plant in cement production industries for optimization of energy consumption |
publisher |
Iranian Society of Heating, Refrigeration and Air Conditioning Engineers (IRSHRAE) |
series |
انرژیهای تجدیدپذیر و نو |
issn |
2423-4931 2676-2994 |
publishDate |
2019-03-01 |
description |
In this study, two of the most popular power generation cycles are analyzed using EES (Engineering Equation Solver). Cycles are evaluated by their efficiencies based on receiving different gas temperatures extracted from a Gorgo-flame cement rotary kiln. Results show that employing CHP technology in cement production plants will efficiently optimizes energy consumptions beside its effectiveness in decreasing environmental pollutions. Based on the obtained results, the steam cycle was more efficient and saves more amounts of energy. In study the efficiency of the cycles, the difference is observed between 5-20% at the same temperature. |
topic |
chp simulation rotary kiln brayton gas cycle |
url |
http://www.jrenew.ir/article_82125_ac6e7acaec9b92b64371cae68058750b.pdf |
work_keys_str_mv |
AT mehranalipour analysisofchpplantincementproductionindustriesforoptimizationofenergyconsumption AT zahrabaniamerian analysisofchpplantincementproductionindustriesforoptimizationofenergyconsumption |
_version_ |
1721537674464985088 |