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Analysis of the soiling effect on the performance of photovoltaic modules on a soccer stadium in Minas Gerais, Brazil

机译:巴西米纳斯吉拉斯州一个足球场上的污染对光伏组件性能的影响分析

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As the photovoltaic (PV) panel installed capacity has significantly increased over the last years, it is interesting to investigate the phenomena that may cause adverse effects on the performance of the modules, such as soiling. This work is aimed at evaluating the impact of PV panel soiling in the performance of a solar power plant on a soccer stadium in the state of Minas Gerais, Brazil, as well as to characterize the dust physically and chemically. The PV power plant is composed of 5910 multicrystalline silicon PV modules. Two diametrically opposed groups of modules were chosen and their generation was analyzed for 43 days in the second half of winter, each group containing reference modules that were manually cleaned every five days. A rainfall occurred on day 23 and some modules were manually cleaned on day 30. The collected dust was characterized by X-ray diffraction and by X-ray fluorescence. The particle size distribution and the shape of the particles were also investigated. For the sets of PV modules and the testing period studied, soiling reduced peak power in approximately 13.7% in the dry period, and 6.5% in the period after a rainfall. The energy production was reduced in approximately 16.5% in the dry period and 8.0% in the period after a rainfall. The average particle size of the southwest oriented group (Group A) and the northeast oriented group (Group B) was 35.3 and 28.7 pm respectively, but this difference did not make a significant effect in the performance of the modules. The collected dust was composed mainly of quartz, hematite and calcite. These results reinforce the need of manually cleaning the PV modules in order to maintain a high generation performance.
机译:由于光伏(PV)面板的安装容量在过去几年中已大大增加,因此研究可能对模块性能产生不利影响(例如弄脏)的现象非常有趣。这项工作旨在评估光伏板污染对巴西米纳斯吉莱斯州足球场上太阳能发电厂的性能的影响,并以物理和化学方式表征粉尘。光伏电站由5910个多晶硅光伏模块组成。选择了两个截然相反的组件组,并在冬季的下半年对它们的生成进行了43天的分析,每组包含参考组件,每五天进行一次手动清洁。第23天出现降雨,第30天手动清洁了一些模块。通过X射线衍射和X射线荧光对收集到的粉尘进行表征。还研究了粒度分布和颗粒形状。对于所研究的一组光伏组件和测试期,在干燥期中,污染降低了峰值功率,大约降低了13.7%,在降雨后降低了6.5%。干旱时期的能源生产减少了大约16.5%,降雨之后的能源生产减少了8.0%。西南取向组(A组)和东北取向组(B组)的平均粒径分别为35.3和28.7 pm,但这种差异对组件的性能没有显着影响。收集的粉尘主要由石英,赤铁矿和方解石组成。这些结果增加了手动清洁PV模块以维持高发电性能的需求。

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