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:: Volume 1, Issue 2 (Autumn 2010 2010) ::
تبدیل انرژی 2010, 1(2): 17-23 Back to browse issues page
Thermodynamic parameters of the production cycle performance optimization using genetic Algorithm
Mohammadreza Assari *1 , Afshin Ghanbarzadeh , Sajad Mosaviasl , Ehsan Taheripour
1- , Mr.assari@yahoo.com
Abstract:   (3098 Views)

Designing synchronic recovery cycle was very complex due to existence two different recovery cycle power which was related to retrievers boiler. And any changes in designing directly were eclipsed power, efficiency, and costs, and many other variables.Researchers always was tied to indicating a way for optimizing properties and different sections (parts) of synchronic recovery cycles, but complete reviewing cycle was less considered due to unique complexities.In this article, we are considered to complete modeling synchronic recovery cycle, indicating the results of energy analysis, exergy of defining appropriate fitness function and then optimizing the model which was indicated by powerful instruments of genetic algorithm.Also, the accuracy of calculated results was proved by comparing with practical cycle results of biklent university. It was necessary to say that in this research, for the first time, has been optimized complete cycle synchronic recovery by genetic algorithm.

Keywords: synchronic recovery cycle, optimization, genetic algorithm, modeling
Full-Text [PDF 112 kb]   (890 Downloads)    
Type of Study: Research | Subject: General
Received: 2016/02/27 | Accepted: 2016/02/27 | Published: 2016/02/27
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Assari M, Ghanbarzadeh A, Mosaviasl S, Taheripour E. Thermodynamic parameters of the production cycle performance optimization using genetic Algorithm. تبدیل انرژی 2010; 1 (2) :17-23
URL: http://jeed.dezful.iau.ir/article-1-29-en.html


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Creative Commons License This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
Volume 1, Issue 2 (Autumn 2010 2010) Back to browse issues page
مجله علمی تخصصی مهندسی مکانیک تبدیل انرژی Journal of Energy Conversion
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