尼泊尔三个单晶硅太阳能光伏并网系统的性能评估

Jeewan Shrestha, Nawraj Bhattarai
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摘要

本研究采用四个标准对三个并网太阳能光伏系统进行了评估:最终收益、性能比、容量利用系数和系统效率。光伏系统分别安装在尼泊尔电信公司位于巽他、博克拉和比拉德讷格尔办事处的屋顶上。发电数据通过安装在这些地点的数据记录器的网络界面收集。对位于 Sundhara 的发电站进行了长期(四年)比较,并对位于 Pokhara 和 Biratnagar 的发电站进行了相同系统的比较。对 Sundhara 工厂的长期分析发现,最终产量从 2019 年的 2.91 kWh/kWp 降至 2022 年的 2.21 kWh/kWp。同样,性能比从 2019 年的 91.0% 降至 2022 年的 67.3%,产能利用率从 2019 年的 12.1% 降至 2022 年的 9.2%,系统效率从 2019 年的 16.8% 降至 2022 年的 12.5%。 由于气象参数的变化,安装在博卡拉和比拉德讷格尔的同一系统的性能略有不同。比拉德讷格尔的平均气温(26.7°C)高于博卡拉(13.1°C),而比拉德讷格尔的太阳辐射量仅高出 4%。这导致比拉德讷格尔的最终产量比博卡拉减少了 9%,因为比拉德讷格尔的温度更高,导致太阳能电池板的功率输出减少更多。最后,这项研究为研究人员、光伏安装人员和电池板制造商提供了有关尼泊尔并网太阳能光伏实际性能的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance evaluation of three grid-connected monocrystalline silicon solar photovoltaic systems in Nepal
This study evaluates three grid-connected solar photovoltaic (PV) systems using four criteria: final yield, performance ratio, capacity utilization factor, and system efficiency. The PV systems were installed on the rooftop of the Nepal Telecom office at Sundhara, Pokhara, and Biratnagar. The generation data was collected through the web interface of the data logger installed at the sites. Long-term comparison (four years) of the plant at Sundhara and the same system comparison of plants at Pokhara and Biratnagar were performed. Long-term analysis of the plant at Sundhara found that the final yield decreased from 2.91 kWh/kWp in 2019 to 2.21 kWh/kWp in 2022. Similarly, the performance ratio decreased from 91.0% in 2019 to 67.3% in 2022, capacity utilization factor decreased from 12.1% in 2019 to 9.2% in 2022, and system efficiency decreased from 16.8% in 2019 to 12.5% in 2022.  The same system installed at Pokhara and Biratnagar had slightly varied performance owing to the variation in meteorological parameters. The average air temperature at Biratnagar (26.7°C) was higher than at Pokhara (13.1°C) while the amount of solar radiation at Biratnagar was just higher by 4%. This led to the reduction of final yield by 9% at Biratnagar than at Pokhara as higher temperatures at Biratnagar caused more reduction in the power output from the solar panels. Finally, this study provides insights to researchers, PV installers, and panel manufacturers on the actual performance of grid-connected solar PV in Nepal.
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