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首页> 外文期刊>Journal of Materials >Simulation of Water Vapor Ingress into PV-Modules under Different Climatic Conditions
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Simulation of Water Vapor Ingress into PV-Modules under Different Climatic Conditions

机译:不同气候条件下水蒸气进入光伏组件的模拟

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This work deals with the simulation of water vapor ingress into wafer-based PV-modules for long-term exposure under different climatic conditions. Measured material parameters together with climatic data sets from four test sites (tropic, moderate, alpine, and arid) were used to calculate the water concentration inside of the encapsulant between solar cell and glass for a lifetime of 20 years. Two back-sheet materials (PET-based and PA-based) combined with EVA as encapsulant were used in respect to their influence on water ingress. The results show faster water ingress for warmer regions, but the highest concentrations were found for the moderate test site. The water ingress was additionally influenced by the used encapsulant and back-sheet combination. In particular the temperature dependency of the mass transfer, which differs from material to material, was the focus of this investigation.
机译:这项工作涉及水蒸气进入基于晶片的PV组件的模拟,以便在不同气候条件下长期暴露。测量的材料参数以及来自四个测试点(热带,中度,高山和干旱)的气候数据集被用于计算太阳能电池和玻璃之间密封剂内部的水浓度,使用寿命为20年。考虑到它们对进水的影响,使用了两种背板材料(PET基和PA基)和EVA作为密封剂。结果表明,温暖地区的水进入速度更快,但中等测试点的水浓度最高。进水还受到所用密封剂和底片组合的影响。特别地,传质的温度依赖性因材料而异,是本研究的重点。

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