Thermodynamics performance and heat transfer analysis of parabolic trough collector in solar power plant / Omid Afshar

Today, solar energy can play a vital role in the world. Parabolic trough collector is one type of solar devices that play an important role in the power system. The main components of parabolic trough collector are curve mirror and receiver system. Iran is one of the potential countries that use par...

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Main Author: Omid , Afshar
Format: Thesis
Published: 2013
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Online Access:http://studentsrepo.um.edu.my/8098/4/THERMODYNAMICS_PERFORMANCE_AND_HEAT_TRANSFER_ANALYSIS_OF_PARABOLIC_TROUGH_COLLECTOR_IN_SOLAR_POWER_PLANT%2DOMID_.pdf
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spelling my.um.stud.80982018-01-20T03:14:19Z Thermodynamics performance and heat transfer analysis of parabolic trough collector in solar power plant / Omid Afshar Omid , Afshar T Technology (General) Today, solar energy can play a vital role in the world. Parabolic trough collector is one type of solar devices that play an important role in the power system. The main components of parabolic trough collector are curve mirror and receiver system. Iran is one of the potential countries that use parabolic trough power plant system. In this research thermodynamics performance like exergy and thermal efficiency will be considered on the first, tenth, fifteenth, twentieth, twenty-fifth and thirtieth of September. Iran will be considered as a case study in whole time. Then, heat transfer in different parts of receiver system will be analyzed at 250˚C. Based on some experimental tools, temperature and mass flow rate and solar parameter, can be estimated when it comes to thermodynamics and heat transfer values. The result shows that the value of exergy and thermal efficiency on the first of September is the highest. Second law efficiency on the first of September at 12 noon is around 10% and the value of exergy at that time is approximately 15.5kJ/kg in collector system. The value of convection heat transfer between the heat transfer fluid and the receiver pipe was around 15.5kW in 250˚C. 2013-02-19 Thesis NonPeerReviewed application/pdf http://studentsrepo.um.edu.my/8098/4/THERMODYNAMICS_PERFORMANCE_AND_HEAT_TRANSFER_ANALYSIS_OF_PARABOLIC_TROUGH_COLLECTOR_IN_SOLAR_POWER_PLANT%2DOMID_.pdf Omid , Afshar (2013) Thermodynamics performance and heat transfer analysis of parabolic trough collector in solar power plant / Omid Afshar. Masters thesis, University of Malaya. http://studentsrepo.um.edu.my/8098/
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Student Repository
url_provider http://studentsrepo.um.edu.my/
topic T Technology (General)
spellingShingle T Technology (General)
Omid , Afshar
Thermodynamics performance and heat transfer analysis of parabolic trough collector in solar power plant / Omid Afshar
description Today, solar energy can play a vital role in the world. Parabolic trough collector is one type of solar devices that play an important role in the power system. The main components of parabolic trough collector are curve mirror and receiver system. Iran is one of the potential countries that use parabolic trough power plant system. In this research thermodynamics performance like exergy and thermal efficiency will be considered on the first, tenth, fifteenth, twentieth, twenty-fifth and thirtieth of September. Iran will be considered as a case study in whole time. Then, heat transfer in different parts of receiver system will be analyzed at 250˚C. Based on some experimental tools, temperature and mass flow rate and solar parameter, can be estimated when it comes to thermodynamics and heat transfer values. The result shows that the value of exergy and thermal efficiency on the first of September is the highest. Second law efficiency on the first of September at 12 noon is around 10% and the value of exergy at that time is approximately 15.5kJ/kg in collector system. The value of convection heat transfer between the heat transfer fluid and the receiver pipe was around 15.5kW in 250˚C.
format Thesis
author Omid , Afshar
author_facet Omid , Afshar
author_sort Omid , Afshar
title Thermodynamics performance and heat transfer analysis of parabolic trough collector in solar power plant / Omid Afshar
title_short Thermodynamics performance and heat transfer analysis of parabolic trough collector in solar power plant / Omid Afshar
title_full Thermodynamics performance and heat transfer analysis of parabolic trough collector in solar power plant / Omid Afshar
title_fullStr Thermodynamics performance and heat transfer analysis of parabolic trough collector in solar power plant / Omid Afshar
title_full_unstemmed Thermodynamics performance and heat transfer analysis of parabolic trough collector in solar power plant / Omid Afshar
title_sort thermodynamics performance and heat transfer analysis of parabolic trough collector in solar power plant / omid afshar
publishDate 2013
url http://studentsrepo.um.edu.my/8098/4/THERMODYNAMICS_PERFORMANCE_AND_HEAT_TRANSFER_ANALYSIS_OF_PARABOLIC_TROUGH_COLLECTOR_IN_SOLAR_POWER_PLANT%2DOMID_.pdf
http://studentsrepo.um.edu.my/8098/
_version_ 1738506102194044928
score 13.188404