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A novel concentrating photovoltaic/thermal solar system combined with thermoelectric module in an integrated design

机译:集成设计的新型聚光光伏/热太阳能系统与热电模块的组合

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The use of solar energy concentration systems for achieving performance enhancements in the Photovoltaic/thermal hybrid solar systems and reduction of initial costs is an idea that has been studied for years. In this article a new structure for parabolic trough photovoltaic/thermal collector is proposed and its thermal and electrical performances are experimentally investigated. The receiver of this concentrator contains a triangular channel with an outer surface covered with photovoltaic cells and thermoelectric modules with a specific arrangement so that in addition to absorbing heat, a larger portion of the solar radiation is directly converted to electricity. Hence, the performance of the system is enhanced. Performance evaluation of this combined heat and power system that is equipped with one-axis solar tracker in polar mechanism shows that daily average electrical and thermal efficiencies can reach 4.83% and 46.16%, respectively. In addition, the electricity generation capacity of the photovoltaic module applied to this system has become fourfold in comparison with its standard working conditions. As a result, besides simultaneous generation of heat and electricity, the proposed model has a satisfactory performance. (C) 2017 Elsevier Ltd. All rights reserved.
机译:使用太阳能集中系统来提高光伏/热混合太阳能系统的性能并降低初始成本是一个已经研究了多年的想法。在本文中,提出了一种用于抛物槽式光伏/集热器的新结构,并通过实验研究了其热和电性能。该集中器的接收器包含一个三角形通道,该通道的外表面覆盖有光伏电池和具有特定布置的热电模块,因此,除了吸收热量外,大部分太阳辐射都直接转化为电能。因此,增强了系统的性能。对配备单轴太阳能跟踪器的极地机制热电联产系统的性能评估表明,日平均电气和热效率分别可以达到4.83%和46.16%。另外,与该系统的标准工作条件相比,应用于该系统的光伏模块的发电能力已提高了四倍。结果,除了同时产生热和电之外,所提出的模型还具有令人满意的性能。 (C)2017 Elsevier Ltd.保留所有权利。

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