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COMBINED EXPERIMENTAL AND SIMULATORY EVALUATION OF THERMAL AND MECHANICAL LOADS ON PV MODULES

机译:光伏组件热负荷和机械负荷的组合实验和模拟评估

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A key factor for the long-term performance degradation of PV modules is an in-use damage of theactual solar cells by loads causing (micro-)cracks. Besides external mechanical forces, the main source of these isforces created by different thermal expansions of the module components, inducing mechanical loads as soon as themodule temperature changes. These thermo-mechanical effects are complex and highly interdependent, also sincethey are not only affected by the momentary temperature situation but likewise by the module’s life history. Thisbecomes an issue since manufacturing and use of PV modules necessarily comprise temperature changes; residualstresses thus become an inherent part of each module. To achieve a better understanding of these effects, resistantstrain gauge rosettes and temperature sensors have been included in dedicated test mini-modules comprising only onesolar cell each. Using these, the principal strains occurring during lamination and later in thermal cycles simulatinguse have been monitored and analysed. It can be shown that the thermal loads of the lamination process impose thehighest stresses on the solar cells, and that this stress magnitude is not correlated to the lamination time. The experimentsalso confirm the protective effect of the ethylene/vinyl acetate (EVA) encapsulant for preventing cell fracture.Related simulations taking into account the highly temperature-dependent material properties of the EVA can qualitativelyreproduce the experimental findings, although a detailed reproduction will requiring future efforts takingeven more effects into account.
机译:光伏组件长期性能下降的关键因素是光伏组件的使用中损坏。 实际的太阳能电池受负载引起的(微)裂纹的影响。除了外力之外,这些力的主要来源是 由模块组件的不同热膨胀产生的力,在 模块温度变化。这些热机械效应是复杂且高度相互依赖的,这也是因为 它们不仅受瞬时温度状况的影响,而且还受模块使用寿命的影响。这 由于光伏组件的制造和使用必定会引起温度变化,因此成为一个问题;剩余的 因此,应力成为每个模块的固有部分。为了更好地了解这些影响,抗性 应变仪花环和温度传感器已包含在专用的测试微型模块中,该微型模块仅包含一个 每个太阳能电池。使用这些,在层压期间以及随后在热循环中模拟的主要应变 使用情况已受到监控和分析。可以看出,层压过程的热负荷强加了 太阳能电池上的应力最大,并且该应力大小与层压时间无关。实验 还证实了乙烯/醋酸乙烯酯(EVA)密封剂对防止细胞破裂的保护作用。 考虑到EVA的高度依赖于温度的材料特性的相关模拟可以定性地进行 再现实验结果,尽管详细再现将需要未来的努力 考虑到更多的影响。

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