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Performance and potential of a novel floating photovoltaic system in Egyptian winter climate on calm water surface

机译:埃及冬季气候平静水面漂浮式光伏系统的性能与潜力

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摘要

This article investigates the performance of a partially submerged floating photovoltaic system (PSFPV) as a proposal for harvesting solar energy as an electricity production novel system under Egyptian hot climate on calm water surfaces. The proposed system comprised of a floating photovoltaic system with a submerged portion in the surrounding water. The PSFPV system is constructed in addition to the water body and is then extensively examined under Egyptian outdoor conditions. The submerged portion of the PSFPV system keeps the system passively cool by being in direct contact with the surrounding water. A performance comparison between the novel PSFPV system and a similar land based photovoltaic system (LPV) is also provided. The suggested PSFPV module's thermal and electrical performance was evaluated concerning its submerged length, which ranged from 4 to 24 cm. The results reveal that the PSFPV system achieves a reduction of about 15.10 in operating temperature relative to the LPV system. Also, the PSFPV system produces up to 20.76 more electricity than the LPV system. The PSFPV system is capable of alleviating the emission of CO2 by about 49.66 kg/summer season. The proposed PSFPV system reveals a reduction in the LCOE from 0.075 to 0.067 ($/kWh) by increasing the submerged length from 4 to 24 cm. (C) nbsp;2022 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文研究了部分浸没式漂浮光伏系统(PSFPV)的性能,作为在埃及炎热气候下在平静水面上收集太阳能作为电力生产新型系统的建议。拟议的系统由一个漂浮的光伏系统组成,其浸没部分浸没在周围的水中。PSFPV系统是在水体之外建造的,然后在埃及的户外条件下进行广泛的检查。PSFPV系统的浸没部分通过与周围的水直接接触来保持系统被动冷却。此外,还对新型PSFPV系统与类似的陆基光伏系统(LPV)进行了性能比较。评估了建议的PSFPV模块的热和电气性能,其浸没长度范围为4至24厘米。结果表明,与LPV系统相比,PSFPV系统的工作温度降低了约15.10%。此外,PSFPV 系统的发电量比 LPV 系统高出 20.76%。PSFPV系统能够在夏季减少约49.66公斤的二氧化碳排放。拟议的PSFPV系统显示,通过将淹没长度从4厘米增加到24厘米,将LCOE从0.075降低到0.067($/kWh)。2022 Hydrogen Energy Publications LLC. 由爱思唯尔有限公司出版保留所有权利。

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