抛物面槽镜作为热电发电机太阳能聚光器的实验与理论性能评价

S. Memon, M. Mihreteab, T. Katsura, A. Radwan, S. Zhang, Ahmed A. Serageldin, E. M. Abo-Zahhad
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引用次数: 11

摘要

本文介绍了利用抛物面槽镜作为太阳能聚光器利用太阳辐射热的前景,并与利用热电发电机(TEG)进行电能转换的石英-卤素聚光器的数学模型和实验模型进行了比较。介绍了带抛物面槽镜和石英卤素灯的teg装置的构造和设计。在距离为19.05 cm处用作焦点的抛物面槽镜。石英卤素8次集中加热,在集中热面温度为317.8 K时,ΔT为11.8 K, Voc为292 mV, Isc为95.8 mA,达到了最大性能。与自然太阳聚热相比,热重热面温度达到473.15 K。得出抛物面镜的热集中随自然太阳辐射热强度的增加而增加的结论。在温度差为110 K时测得1.76 V的Voc和1.1 A的Isc,与经验证的数学结果吻合较好。利用抛物面式槽形反射镜,由于其尺寸较小,因此比较大的碟形反射镜收集较少的太阳光线,因此焦点处的热量很低,为了获得更好的结果,在未来的实验中,具有更大表面积的抛物面式槽形反射镜将是重要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental and Theoretical Performance Evaluation of Parabolic trough Mirror as Solar Thermal Concentrator to Thermoelectric Generators
This paper presents the prospects of harnessing radiative heat from the sun with a parabolic trough mirror, as a solar thermal concentrator, in comparison to the mathematical model and experimental quartz-halogen concentrator model for the electrical energy conversion utilizing thermoelectric generators (TEG). The construction and design of TEG-setup along with Parabolic trough mirrors and quartz-halogen lamps are presented. The Parabolic trough mirror used as a focal point at a distance of 19.05 cm. With eight quartz-halogen concentrated heat, the maximum performance achieved at ΔT of 11.8 K, Voc of 292 mV and Isc of 95.8 mA, recorded at the concentrated hot-side surface temperature of 317.8 K. When compared to the natural solar concentrated heat, higher temperature of 473.15 K at the hot-side surface temperature of TG was achieved. It is concluded that the heat concentration of the parabolic mirror increases with an increase in the intensity of heat using natural solar radiations. The Voc of 1.76 V and Isc of 1.1 A at a temperature difference of 110 K were measured, which are in good agreement with validated mathematical results. The parabolic through mirror utilized is smaller in size and thus collected lesser sun rays than the larger dish style mirror, and hence the heat in the focal point was very low, for better results, parabolic trough mirror with higher surface area would be important for future experiments.
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