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Daily Power Output Increase of Over 3 with the Use of Structured Glass in Monocrystalline Silicon PV Modules

机译:通过在单晶硅光伏模块中使用结构化玻璃,每日电力输出增加超过3%

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Various types of structured glass have been evaluated in terms of module efficiency and total energy yield. A glass with fine round pits has been selected as optimum as a result of our evaluation taking into account efficiency gain, improved energy yield, outdoor performance and material cost. The benefit from such glass with reduced reflectance is observed through a nominal power boost of around 1%. The largest benefit from this glass, however, is obtained when rays arrive to the front module surface at low incident angles. In this case a power increase of over 15% can be measured, at the early morning and evening hours. Overall, this is translated in an increase in a measured daily energy output of more than 3%, which is a substantial gain in terms of electricity production per module. The benefit can be even larger in installations where the inclination of the module is not optimal as, for instance, on facades. The long-term performance of modules with structured glass has been evaluated in an outdoor monitoring station, showing no accumulation of dust in the glass features even after long periods with complete absence of rains in southern Spain
机译:在模块效率和总能量产量方面已经评估了各种类型的结构化玻璃。由于我们的评估考虑了效率增益,提高了能源产量,户外性能和材料成本,因此选择了一种具有细圆形凹坑的玻璃作为最佳选择。通过额定功率升压观察到这种玻璃具有减少的反射率的益处。然而,当光线以低入射角到达前部模块表面时获得该玻璃的最大益处。在这种情况下,可以在清晨和傍晚的时间测量超过15%的功率增加。总的来说,这在测量的日常能量产量增加3%以上的增加,这是每个模块的电力生产率的实质性增益。在模块的倾斜度不是最佳的安装中,该益处可以更大,例如在外墙上。具有结构化玻璃的模块的长期性能已经在室外监测站中进行了评估,即使在南部西班牙南部完全没有降雨的长期之后,也没有在玻璃功能中积累玻璃功能的积累

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