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Simulation of water ingress into PV-modules: IEC-testing versus outdoor exposure

机译:模拟水进入光伏组件:IEC测试与室外暴露

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In this paper the water uptake by PV-modules during weathering tests of the type approval standard IEC 61215 was simulated and compared with the water ingress under ambient outdoor conditions. For this purpose, the base materials, one encapsulant (EVA) and one back sheet (TPT), were analyzed regarding their water vapor permeability. The micro climate a PV-module sees at its surface was monitored during accelerated IEC tests and at outdoor test sites located in four different climatic regions. These measured values were used for FEM based simulations of the water ingress into PV-modules. The results show the speed and the amount of water uptake under IEC-test conditions as damp heat, humidity freeze and thermal cycling tests compared with the water ingress under the different climates. It can be stated that the IEC-damp-heat test provokes almost two times higher water concentrations in the encapsulant between cell and glass than outdoor weathering can adjust over 20 years. The humidity freeze test shows a similar behavior and even the thermal cycling test results in a slightly water uptake in the back sheet. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文模拟了类型批准标准IEC 61215的耐候性测试期间光伏组件的吸水情况,并将其与室外环境下的进水进行了比较。为此,分析了一种基材,一种密封剂(EVA)和一种背板(TPT)的透湿性。在加速的IEC测试过程中和位于四个不同气候区域的室外测试站点中,监视了光伏组件表面所见的微气候。这些测量值用于基于FEM的水进入PV模块的模拟。结果表明,在不同湿度下,IEC测试条件(如湿热,湿度冻结和热循环测试)下的吸水速度和吸水量与进水量相比。可以说,IEC湿热试验所引发的电池和玻璃之间的密封剂中水的浓度几乎是20年来室外风化所能调节的两倍。湿度冷冻测试显示出类似的行为,甚至热循环测试也导致背板略微吸水。 (C)2015 Elsevier Ltd.保留所有权利。

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