Biaxial-Type Concentrated Solar Tracking System with a Fresnel Lens for Solar-Thermal Applications

In this paper, an electromechanical, biaxial-type concentrated solar tracking system was designed for solar-thermal applications. In our tracking system, the sunlight was concentrated by the microstructure of Fresnel lens to the heating head of the Stirling engine and two solar cells were installed...

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Main Authors: Tsung Chieh Cheng, Chao Kai Yang, I Lin
Format: Article
Language:English
Published: MDPI AG 2016-04-01
Series:Applied Sciences
Subjects:
Online Access:http://www.mdpi.com/2076-3417/6/4/115
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spelling doaj-c8f3d484be934ac198aa389d1f3ca3fe2020-11-25T02:51:26ZengMDPI AGApplied Sciences2076-34172016-04-016411510.3390/app6040115app6040115Biaxial-Type Concentrated Solar Tracking System with a Fresnel Lens for Solar-Thermal ApplicationsTsung Chieh Cheng0Chao Kai Yang1I Lin2Department of Mechanical Engineering, National Kaohsiung University of Applied Sciences, Kaohsiung 80778, TaiwanDepartment of Mechanical Engineering, National Kaohsiung University of Applied Sciences, Kaohsiung 80778, TaiwanDepartment of Mechanical Engineering, National Kaohsiung University of Applied Sciences, Kaohsiung 80778, TaiwanIn this paper, an electromechanical, biaxial-type concentrated solar tracking system was designed for solar-thermal applications. In our tracking system, the sunlight was concentrated by the microstructure of Fresnel lens to the heating head of the Stirling engine and two solar cells were installed to provide the power for tracking system operation. In order to obtain the maximum sun power, the tracking system traces the sun with the altitude-azimuth biaxial tracing method and accurately maintains the sun’s radiation perpendicular to the plane of the heating head. The results indicated that the position of heating head is an important factor for power collection. If the sunlight can be concentrated to completely cover the heating head with small heat loss, we can obtain the maximum temperature of the heating head of the Stirling engine. Therefore, the temperature of heating head can be higher than 1000 °C in our experiment on a sunny day. Moreover, the results also revealed that the temperature decrease of the heating head is less than the power decrease of solar irradiation because of the latent heat of copper and the small heat loss from the heating head.http://www.mdpi.com/2076-3417/6/4/115solar tracking systemFresnel lensaltitude-azimuth biaxial tracing
collection DOAJ
language English
format Article
sources DOAJ
author Tsung Chieh Cheng
Chao Kai Yang
I Lin
spellingShingle Tsung Chieh Cheng
Chao Kai Yang
I Lin
Biaxial-Type Concentrated Solar Tracking System with a Fresnel Lens for Solar-Thermal Applications
Applied Sciences
solar tracking system
Fresnel lens
altitude-azimuth biaxial tracing
author_facet Tsung Chieh Cheng
Chao Kai Yang
I Lin
author_sort Tsung Chieh Cheng
title Biaxial-Type Concentrated Solar Tracking System with a Fresnel Lens for Solar-Thermal Applications
title_short Biaxial-Type Concentrated Solar Tracking System with a Fresnel Lens for Solar-Thermal Applications
title_full Biaxial-Type Concentrated Solar Tracking System with a Fresnel Lens for Solar-Thermal Applications
title_fullStr Biaxial-Type Concentrated Solar Tracking System with a Fresnel Lens for Solar-Thermal Applications
title_full_unstemmed Biaxial-Type Concentrated Solar Tracking System with a Fresnel Lens for Solar-Thermal Applications
title_sort biaxial-type concentrated solar tracking system with a fresnel lens for solar-thermal applications
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2016-04-01
description In this paper, an electromechanical, biaxial-type concentrated solar tracking system was designed for solar-thermal applications. In our tracking system, the sunlight was concentrated by the microstructure of Fresnel lens to the heating head of the Stirling engine and two solar cells were installed to provide the power for tracking system operation. In order to obtain the maximum sun power, the tracking system traces the sun with the altitude-azimuth biaxial tracing method and accurately maintains the sun’s radiation perpendicular to the plane of the heating head. The results indicated that the position of heating head is an important factor for power collection. If the sunlight can be concentrated to completely cover the heating head with small heat loss, we can obtain the maximum temperature of the heating head of the Stirling engine. Therefore, the temperature of heating head can be higher than 1000 °C in our experiment on a sunny day. Moreover, the results also revealed that the temperature decrease of the heating head is less than the power decrease of solar irradiation because of the latent heat of copper and the small heat loss from the heating head.
topic solar tracking system
Fresnel lens
altitude-azimuth biaxial tracing
url http://www.mdpi.com/2076-3417/6/4/115
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AT ilin biaxialtypeconcentratedsolartrackingsystemwithafresnellensforsolarthermalapplications
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