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Performance Assessment of Different Photovoltaic Technologies for Canal-Top and Reservoir Applications in Subtropical Humid Climate

机译:在亚热带湿润气候下,用于渠顶和水库的不同光伏技术的性能评估

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摘要

The performance of photovoltaic (PV) panels installed on water bodies is affected by the local environmental conditions. The performance assessment of different PV technologies above water bodies is important for the selection of suitable PV technology for their large-scale installations and scope of improvement. The long-term performance assessment of water bodies-based PV systems is not reported widely. An experimental setup for the outdoor performance assessment of three commercially available PV technologies (Multicrystalline Silicon (Multi-Si), Heterojunction with Intrinsic Thin layer (HIT), cadmium telluride (CdTe)) above water bodies was developed and measurements were carried out for six months. The performance of water bodies-based PV panels is compared with conventional ground-based PV panels. The reduction in evaporation loss by water bodies-based PV systems is not reported and has been experimentally and analytically quantified under this study. The average performance ratio of water bodies-based HIT and Multi-Si modules are found lower than their respective ground-based modules, which are contrary to the general perception of higher power generation by crystalline PV technologies on water bodies. However, the CdTe module above water bodies performed better when compared with ground-based CdTe module. Additionally, the reduction in evaporation by installing PV panels above the water surface is found to be 29.1%.
机译:安装在水体上的光伏(PV)面板的性能受当地环境条件的影响。水体上方不同光伏技术的性能评估对于为其大型装置和改进范围选择合适的光伏技术至关重要。基于水体的光伏系统的长期性能评估尚未广泛报道。开发了一种用于评估水上水面的三种商用光伏技术(多晶硅(Multi-Si),具有本征薄层的异质结(HIT),碲化镉(CdTe))的室外性能的实验装置,并进行了六次测量个月。将水基光伏面板的性能与常规地面光伏面板进行了比较。基于水体的光伏系统减少的蒸发损失尚未见报道,并且在本研究中已通过实验和分析进行了量化。人们发现,基于水体的HIT和Multi-Si模块的平均性能比低于其各自的基于地面的模块,这与通过晶体光伏技术在水体上产生更高发电量的普遍看法相反。但是,与地面CdTe模块相比,水体上方的CdTe模块的性能更好。此外,通过在水面以上安装光伏面板,发现蒸发减少了29.1%。

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