Effect on Power Generation of Floating Photovoltaic Power System Power by Water Level Change

Tae Heun Kwon, Jeong-yong Kim, Eui-kyung Kim, Sung-kyu Hong
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引用次数: 1

Abstract

A floating photovoltaic power system is a power generation system that floats on the surface of water. Owing to its floating characteristics, the structure moves as the water level changes. In this study, we investigated whether the changes in water level affect the amount of power generated by the floating photovoltaic power system. We selected floating solar power plants that are currently in operation and analyzed the annual/monthly utilization rates. Our results confirmed that the utilization rate of the floating photovoltaic power system installed in areas with marked changes in water level is the lowest. In addition, correlation analysis of environmental factors that affect power generation such as solar radiation, temperature, humidity, wind speed, and water level confirmed that changes in water level resulted in decrease in power generation.
水位变化对浮式光伏发电系统发电的影响
浮式光伏发电系统是一种漂浮在水面上的发电系统。由于其浮动特性,结构会随着水位的变化而移动。在本研究中,我们研究了水位的变化是否会影响浮式光伏发电系统的发电量。我们选择了目前正在运行的浮动太阳能电站,并分析了年/月利用率。我们的研究结果证实,在水位变化明显的地区,浮式光伏发电系统的利用率最低。此外,通过对太阳辐射、温度、湿度、风速、水位等影响发电的环境因素的相关性分析,证实了水位的变化会导致发电量的减少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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