Effect of Tracking Error of Double-Axis Tracking Device on the Optical Performance of Solar Dish Concentrator

In this paper, a flux distribution model of the focal plane in dish concentrator system has been established based on ray tracking method. This model was adopted for researching the influence of the mirror slope error, solar direct normal irradiance, and tracking error of elevation-azimuth tracking...

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Main Authors: Jian Yan, Zi-ran Cheng, You-duo Peng
Format: Article
Language:English
Published: Hindawi Limited 2018-01-01
Series:International Journal of Photoenergy
Online Access:http://dx.doi.org/10.1155/2018/9046127
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spelling doaj-10c7062beb564c6fb9dbbad27b906fa22020-11-24T23:45:17ZengHindawi LimitedInternational Journal of Photoenergy1110-662X1687-529X2018-01-01201810.1155/2018/90461279046127Effect of Tracking Error of Double-Axis Tracking Device on the Optical Performance of Solar Dish ConcentratorJian Yan0Zi-ran Cheng1You-duo Peng2Hunan Provincial Key Laboratory of Health Maintenance for Mechanical Equipment, Hunan University of Science and Technology, Xiangtan, Hunan 411201, ChinaHunan Provincial Key Laboratory of Health Maintenance for Mechanical Equipment, Hunan University of Science and Technology, Xiangtan, Hunan 411201, ChinaHunan Provincial Key Laboratory of Health Maintenance for Mechanical Equipment, Hunan University of Science and Technology, Xiangtan, Hunan 411201, ChinaIn this paper, a flux distribution model of the focal plane in dish concentrator system has been established based on ray tracking method. This model was adopted for researching the influence of the mirror slope error, solar direct normal irradiance, and tracking error of elevation-azimuth tracking device (EATD) on the focal spot characteristics (i.e., flux distribution, geometrical shape, centroid position, and intercept factor). The tracking error transmission law of the EATD transferred to dish concentrator was also studied. The results show that the azimuth tracking error of the concentrator decreases with the increase of the concentrator elevation angle and it decreases to 0 mrad when the elevation angle is 90°. The centroid position of focal spot along x-axis and y-axis has linear relationship with azimuth and elevation tracking error of EATD, respectively, which could be used to evaluate and calibrate the tracking error of the dish concentrator. Finally, the transmission law of the EATD azimuth tracking error in solar heliostats is analyzed, and a dish concentrator using a spin-elevation tracking device is proposed, which can reduce the effect of spin tracking error on the dish concentrator. This work could provide fundamental for manufacturing precision allocation of tracking devices and developing a new type of tracking device.http://dx.doi.org/10.1155/2018/9046127
collection DOAJ
language English
format Article
sources DOAJ
author Jian Yan
Zi-ran Cheng
You-duo Peng
spellingShingle Jian Yan
Zi-ran Cheng
You-duo Peng
Effect of Tracking Error of Double-Axis Tracking Device on the Optical Performance of Solar Dish Concentrator
International Journal of Photoenergy
author_facet Jian Yan
Zi-ran Cheng
You-duo Peng
author_sort Jian Yan
title Effect of Tracking Error of Double-Axis Tracking Device on the Optical Performance of Solar Dish Concentrator
title_short Effect of Tracking Error of Double-Axis Tracking Device on the Optical Performance of Solar Dish Concentrator
title_full Effect of Tracking Error of Double-Axis Tracking Device on the Optical Performance of Solar Dish Concentrator
title_fullStr Effect of Tracking Error of Double-Axis Tracking Device on the Optical Performance of Solar Dish Concentrator
title_full_unstemmed Effect of Tracking Error of Double-Axis Tracking Device on the Optical Performance of Solar Dish Concentrator
title_sort effect of tracking error of double-axis tracking device on the optical performance of solar dish concentrator
publisher Hindawi Limited
series International Journal of Photoenergy
issn 1110-662X
1687-529X
publishDate 2018-01-01
description In this paper, a flux distribution model of the focal plane in dish concentrator system has been established based on ray tracking method. This model was adopted for researching the influence of the mirror slope error, solar direct normal irradiance, and tracking error of elevation-azimuth tracking device (EATD) on the focal spot characteristics (i.e., flux distribution, geometrical shape, centroid position, and intercept factor). The tracking error transmission law of the EATD transferred to dish concentrator was also studied. The results show that the azimuth tracking error of the concentrator decreases with the increase of the concentrator elevation angle and it decreases to 0 mrad when the elevation angle is 90°. The centroid position of focal spot along x-axis and y-axis has linear relationship with azimuth and elevation tracking error of EATD, respectively, which could be used to evaluate and calibrate the tracking error of the dish concentrator. Finally, the transmission law of the EATD azimuth tracking error in solar heliostats is analyzed, and a dish concentrator using a spin-elevation tracking device is proposed, which can reduce the effect of spin tracking error on the dish concentrator. This work could provide fundamental for manufacturing precision allocation of tracking devices and developing a new type of tracking device.
url http://dx.doi.org/10.1155/2018/9046127
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