A Low Consuming Power Solar Heat Collection Tracker for Solar Thermal Applications

Chao-Kai Yang, T. Cheng
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Abstract

In this paper, an electromechanical, two axes heat collection sun tracking system is designed and constructed. The heat collection sun tracking design, whereby the LDR sensor installed on the Fersnel lens was controlled to track the Sun's radiation. 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 if the position of heating head is located on certain position and then 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. Besides, we also measure the sun irradiation, energy gain from solar cells, energy consumption, and temperature of heading head. We found that the absorption of solar irradiation on heating head is the most important factor for energy gain from solar tracker and the highest temperature of heating head of Stirling engine.
一种用于太阳能热应用的低功耗太阳能热收集跟踪器
本文设计并构造了一种机电双轴集热太阳跟踪系统。热收集太阳跟踪设计,通过控制安装在菲涅耳透镜上的LDR传感器来跟踪太阳辐射。为了获得最大的太阳功率,跟踪系统采用高度-方位双轴跟踪方法对太阳进行跟踪,并精确地保持垂直于加热头平面的太阳辐射。结果表明,如果将加热头的位置设置在一定的位置上,将太阳光集中,使加热头完全覆盖,热量损失小,可以得到斯特林发动机加热头的最高温度。此外,我们还测量了太阳辐照度、太阳能电池的能量增益、能量消耗和抽头温度。研究发现,加热头对太阳辐射的吸收是影响太阳跟踪器能量增益和斯特林发动机加热头最高温度的最重要因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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