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Temperature impacts on the performance parameters of grid-connected PV systems based on field measurements in Palestine

机译:基于巴勒斯坦的实地测量,温度对并网光伏系统性能参数的影响

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摘要

. PV system-1 is installed in the northern West Bank, where the measured maximum module temperature varies during system operation from 30.5 degrees C in winter to 52.5 degrees C in summer, while PV system-2 is installed in the Jordan Valley, where the maximum module temperature varies from 35.5 degrees C in winter to 62.6 degrees C in summer. Measurements of a complete year obtained from PV system-1 of 4.2kWp are analysed to show the negative effect of temperature on the performance parameters of the PV system. At solar radiation of 800W/m(2), the output power varies from 3.0kW in the cold month of December to 2.7kW in the hot month of July. The efficiency and the performance ratio dropped from 13.1 to 11.75% and from 93 to 84% between December and July, respectively, due to the higher ambient temperature during the summer months. The measured annual final yield amounts to 1641.1kWh/kWp and the annual capacity factor amounts to 18.71%. The measured drop in voltage according to module temperature in PV system-2 amounts to 1.93mV/degrees C-Cell.
机译:。光伏系统1安装在西岸北部,在系统运行期间,测得的最高模块温度从冬季的30.5摄氏度变化到夏季的52.5摄氏度,而光伏系统2则安装在约旦河谷(最高)模块温度从冬天的35.5摄氏度到夏天的62.6摄氏度不等。分析了从4.2kWp的PV system-1获得的整年的测量值,以显示温度对PV系统性能参数的负面影响。在800W / m(2)的太阳辐射下,输出功率从12月寒冷月份的3.0kW到7月炎热月份的2.7kW不等。效率和性能比分别在12月和7月之间从13.1%下降到11.75%,从93%下降到84%,这是因为夏季月份的环境温度更高。测得的年最终发电量为1641.1kWh / kWp,年发电量因子为18.71%。根据PV system-2中的模块温度,测得的电压降为1.93mV /摄氏度C-Cell。

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