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A 3D coupled thermo-visco-elastic shear-lag formulation for the prediction of residual stresses in photovoltaic modules after lamination

机译:3D耦合热粘弹性剪切滞后公式,用于预测层压后光伏模块中的残余应力

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Evaluation of the residual stress distribution arising from lamination of photovoltaic (PV) modules is important to address thermomechanically induced failure of PV modules during service. In view of the fact that PV modules contain several Silicon cells, modelling the thermo-mechanical response of PV laminates during cooling after lamination is computationally challenging. Due to the coupling between the thermal and the mechanical fields, the stress state experienced by each silicon cell in a module varies from one position to another. Here, a novel 3D coupled thermo-visco-elastic shear-lag model is proposed to determine the stress distribution in a PV module after lamination. To enhance the prediction of stress distribution in the laminate, viscoelastic properties of the EVA encapsulant are taken into account by using an asymptotic model which is stable for small and large time steps of strain increments. The results for a simulated mini-module show that residual stresses vary significantly from point to point inside the PV module. (C) 2016 Elsevier Ltd. All rights reserved.
机译:评估因光伏(PV)模块层压而产生的残余应力分布,对于解决服务期间因热机械导致的PV模块故障至关重要。鉴于PV模块包含多个硅电池这一事实,在层压后冷却期间对PV层压板的热机械响应进行建模是计算上的挑战。由于热场和机械场之间的耦合,模块中每个硅电池所经历的应力状态从一个位置变化到另一个位置。在此,提出了一种新颖的3D耦合热粘弹性剪切滞后模型,以确定层压后PV模块中的应力分布。为了增强对层压板中应力分布的预测,通过使用渐近模型来考虑EVA密封剂的粘弹性,该模型对于较小和较大时间步长的应变增量都是稳定的。模拟的微型模块的结果表明,残余应力在PV模块内部的各个点之间变化很大。 (C)2016 Elsevier Ltd.保留所有权利。

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