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A thermo-visco-elastic shear-lag model for the prediction of residual stresses in photovoltaic modules after lamination

机译:热粘弹性剪切滞后模型,用于预测层压后光伏组件中的残余应力

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The distribution of residual thermo-elastic stresses in encapsulated solar cells arising from lamination is relevant for the characterization of the long term performance of photovoltaic (PV) modules during service. Accurate modelling of the structural response of the laminate in the transient regime during cooling after lamination is a challenging task from the computational point of view. In this work we propose a semi-analytic model based on the Kirchhoff plate theory and the shear-lag approach for the treatment of the polymeric encapsulant layers and accounting for their time and temperature dependency according to a rheological model derived from fractional calculus considerations. Spatially uniform and non-uniform temperature distributions are compared to accurately assess the amount of the residual compressive stresses raised in the Silicon cells after lamination. The use of more realistic non-uniform temperature distributions leads to lower residual compressive stresses in Silicon as compared to the uniform case. (C) 2015 Elsevier Ltd. All rights reserved.
机译:层压导致的封装太阳能电池中残余热弹性应力的分布与维护期间光伏(PV)模块的长期性能表征有关。从计算的角度来看,在层压之后的冷却过程中,在过渡状态下对层压材料的结构响应进行准确的建模是一项艰巨的任务。在这项工作中,我们提出了一种基于Kirchhoff板理论和剪切滞后方法的半解析模型,用于处理聚合物密封剂层,并根据从分数演算考虑得出的流变模型考虑了它们的时间和温度依赖性。比较空间均匀和不均匀的温度分布,以准确评估层压后硅电池中产生的残余压应力的大小。与均匀情况相比,使用更逼真的非均匀温度分布可以降低硅中的残余压应力。 (C)2015 Elsevier Ltd.保留所有权利。

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