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Proposal and assessment of a solar thermoelectric generation system characterized by Fresnel lens, cavity receiver and heat pipe

机译:以菲涅耳透镜,腔接收器和热管为特征的太阳能热电发电系统的建议和评估

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A solar thermoelectric generation system characterized by Fresnel lens, cavity receiver and heat pipe, i.e., FCH-STGS, was proposed. To analyze the performance of FCH-STGS accurately, a comprehensive theoretical model was built, where a finite element method was employed to consider the Thomson effect and temperature-dependence of thermoelectric materials. With this model, the influences of emissivity of ceramic plate and environment factors such as solar irradiation, optical concentration ratio, wind speed, wind incident angle, system tilt angle and ambient temperature were discussed. Results show that the FCH-STGS has the potential to reach the output power and efficiency of 45.73 W and 3.289%. Both output power and efficiency of FCH-STGS can be improved by decreasing the emissivity of ceramic plate or ambient temperature, or increasing the total solar irradiation (product of solar irradiation and optical concentration ratio). However, the efficiency reduces slightly when the total solar irradiation exceeds a certain value. As the wind speed increases, both output power and efficiency rise firstly and then fall. Due to the high thermal efficiency of cavity (exceeding 85%), the effects of wind incident angle and system tilt angle are approximately negligible. Compared with the previous STGSs, the FCH-STGS is excellent in the perspectives of performance, economy and practicability. (C) 2017 Elsevier Ltd. All rights reserved.
机译:提出了一种以菲涅耳透镜,腔接收器和热管为特征的太阳能热电发电系统,即FCH-STGS。为了准确地分析FCH-STGS的性能,建立了一个综合的理论模型,其中采用有限元方法考虑了热电材料的Thomson效应和温度依赖性。利用该模型,讨论了陶瓷板的发射率和太阳辐射,光聚集比,风速,风入射角,系统倾斜角和环境温度等环境因素的影响。结果表明,FCH-STGS有潜力达到45.73 W和3.289%的输出功率和效率。 FCH-STGS的输出功率和效率都可以通过降低陶瓷板的发射率或环境温度,或增加总的太阳辐射量(太阳辐射量与光集中度的乘积)来提高。但是,当总太阳辐射超过一定值时,效率会稍微降低。随着风速的增加,输出功率和效率都会先上升然后下降。由于腔体的热效率高(超过85%),因此风入射角和系统倾斜角的影响几乎可以忽略不计。与以前的STGS相比,FCH-STGS在性能,经济性和实用性方面都非常出色。 (C)2017 Elsevier Ltd.保留所有权利。

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