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Computational analysis and performance optimization of a solar thermoelectric generator

机译:太阳能热电发电机的计算分析和性能优化

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摘要

Solar energy has been considered for many years one of the most reliable and predictable renewable energy resources for the production of both electricity and heat. At the moment, renewable energy market is mainly focused on photovoltaics and solar thermal systems. Quite recently, the implementation of thermoelectric generators in solar energy conversion systems, as an alternative method for exploiting the potential of this huge resource, has attracted increasing attention. In this paper, the performance of a thermoelectric-based solar conversion unit is investigated computationally, using ANSYS Workbench v. 14.0 CAE Software. The electrical output of the system under consideration has been evaluated and performance prediction has been conducted under various operating conditions, demonstrating maximum power output of 33.7 W. Moreover, different techniques are discussed in order to enhance power output and optimize systetn operation according to the incoming solar irradiation levels, which can differ significantly throughout the year. (C) 2015 Elsevier Ltd. All rights reserved.
机译:多年来,太阳能一直被认为是用于发电和供热的最可靠和可预测的可再生能源之一。目前,可再生能源市场主要集中在光伏和太阳能热系统上。近来,在太阳能转换系统中实施热电发电机作为一种利用这种巨大资源潜力的替代方法,引起了越来越多的关注。在本文中,使用ANSYS Workbench v。14.0 CAE软件对基于热电的太阳能转换单元的性能进行了计算研究。已评估了所考虑系统的电输出,并已在各种工作条件下进行了性能预测,展示了33.7 W的最大功率输出。此外,还讨论了各种技术以根据输入的功率来提高功率输出并优化系统操作太阳辐射水平,全年可能会有很大差异。 (C)2015 Elsevier Ltd.保留所有权利。

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