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AtaMoS TeC Project: Soiling Impact on Bifacial Modules with Different Mounting Geometry in the Atacama Desert in Chile

机译:Atamos TEC项目:智利阿塔卡马沙漠中的不同安装几何与智利不同安装几何的双层模块污染的影响

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Soiling is currently one of the major issues for decreasing power production of PV plants in Chile. In order to prevent significant power losses cleaning frequencies of more than one time per month are scheduled. In the present study, we investigate the impact of soiling on energy yield (Ya) of bifacial solar modules with different material combinations. We fabricated half-size and full-size one cell modules employing different glass thicknesses, encapsulants, transparent backsheets and glass-glass module configurations. Based on indoor current-voltage (IV) measurements which were carried out on front and rear side of each bifacial module type at different irradiance levels, a mathematical Ya model was applied. Front and rear measurements were taken separately and simultaneously assuming the same bifaciality factor at a given irradiation. Ya estimations show that module groups with half-cell design achieve the highest Ya values compared to full-cell design. In addition, vertically mounted bifacial modules (VMBM) produce higher Ya than tilted mounted bifacial modules (TMBM) if the power loss rate due to soiling is higher than 0.10% per day. To validate the Ya model, real outdoor measurements were carried out in the Atacama Desert in Chile for TMBM and for VMBM.
机译:污染目前是降低智利PV工厂电力生产的主要问题之一。为了防止显着的功率损耗,每月清洁频率超过一次。在本研究中,我们研究了不同材料组合污染的双因子太阳能模块能源产量(YA)的影响。我们制作了采用不同玻璃厚度,密封剂,透明底片和玻璃玻璃模块配置的半尺寸和全尺寸的一个单元模块。基于在不同辐照度水平的每个双因子模块类型的前后进行的室内电流 - 电压(IV)测量,应用了一种数学YA模型。正面和后测量分别拍摄,并同时假设给定辐射的相同的双相性因子。 YA估计表明,与全小区设计相比,具有半电池设计的模块组实现了最高的YA值。另外,如果由于污染引起的功率损耗率高于每天0.10%,则垂直安装的双因子模块(VMBM)产生比倾斜的安装的双因素模块(TMBM)更高。为了验证YA模型,真实的户外测量是在智利的Atacama沙漠中进行TMBM和VMBM。

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