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Higher-efficiency for combined photovoltaic-thermoelectric solar power generation

机译:组合光伏热电太阳能发电的更高效率

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Solar energy application in a large spectrum has the potential for high-efficiency energy conversion. Though, solar cells can only absorb photon energy of the solar spectrum near their band-gap energy, and the remaining energy will be converted into thermal energy. The use of the thermoelectric generator becomes a necessity for convert this thermal energy dissipated so as to increase efficiency conversion. This paper analyses the feasibility of photovoltaic-thermoelectric hybrid system and reviews their performance in order to optimize harvested energy. Regarding the thermoelectric effect, a new method of the ambient energy harvesting is presented. This method combines thermoelectric generators and the effects of heat sensitive materials associated to photovoltaic cells in phase change for generating both energy day and night. Experimental measures have been conducted primarily in laboratory conditions for a greater understanding of hybridization phenomena under real conditions and to test the actual performance of devices made. Results show that the hybrid system can generate more power than the simple PV and TEG in environmental conditions. This hybrid technology will highlight the use of renewable energies in the service of the energy production.
机译:在大频谱中的太阳能应用具有高效能量转换的可能性。然而,太阳能电池只能吸收靠近其带间隙能量附近的太阳光谱的光子能量,并且剩余的能量将被转换成热能。热电发电机的使用变为转换该热能耗散的必要性,以提高效率转换。本文分析了光伏热电混合系统的可行性,并回顾了它们的性能,以优化收获的能量。关于热电效应,提出了一种新的环境能量收集方法。该方法将热电发电机和热敏材料与光伏电池相关的效果相结合,以在相变的变化中产生能量日夜。实验措施主要是在实验室条件下进行的,以便在真实条件下更加了解杂交现象,并测试所做的设备的实际性能。结果表明,混合动力车系统可以在环境条件下产生比简单的PV和TEG更多的功率。这种混合动力技术将突出可再生能源在能源生产服务中的使用。

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