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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Spatial and orientational distribution of cracks in crystalline photovoltaic modules generated by mechanical load tests
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Spatial and orientational distribution of cracks in crystalline photovoltaic modules generated by mechanical load tests

机译:机械载荷测试在晶体光伏组件中产生的裂纹的空间和方向分布

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摘要

Cracks in crystalline silicon solar cells influence the photovoltaic (PV) module power output in accelerated aging tests. A detailed insight into the formation of cracks offers the potential to optimize the PV module design in order to reduce the risk of power degradation in its lifetime. In this paper we present a statistical analysis on the crack formation in 27 crystalline silicon PV modules caused by a standard mechanical load test according to IEC 61215 10.16. The criticality of cracks depends strongly on the crack orientation, therefore we analyze both the spatial distribution of cracks and its dependence on the orientation of the cracks in the tested PV modules. We find that 50% of the damaged cells are cracked parallel to the busbars, which is a crack orientation with high potential impact on the power output of the PV module. A simplified numerical analysis is used to give an explanation for the statistical data and we propose a strategy for the reduction of the crack criticality.
机译:在加速老化测试中,晶体硅太阳能电池的裂缝会影响光伏(PV)模块的功率输出。对裂纹形成的详细了解提供了优化光伏组件设计的潜力,从而降低了其使用寿命中功率下降的风险。在本文中,我们对根据IEC 61215 10.16进行的标准机械载荷测试对27个晶体硅光伏组件中的裂纹形成进行了统计分析。裂纹的临界度在很大程度上取决于裂纹的取向,因此我们在测试的光伏组件中分析了裂纹的空间分布及其对裂纹取向的依赖性。我们发现,损坏的电池中有50%平行于母线开裂,这是一种裂纹取向,对光伏组件的功率输出有很大的潜在影响。简化的数值分析用于解释统计数据,我们提出了降低裂纹临界度的策略。

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