Investigation of the Turkey’s Climate for Service Lifetime of Photovoltaic Modules: A Mapping Approach

Abdülkerim Gök
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Abstract

The longevity of photovoltaic systems during real-world operation is a concern that needs to be addressed. Polymeric materials used in module constructions, particularly encapsulants, are susceptible to hydrolysis, which can lead to cell metallization corrosion and result in power loss and shortened service lifetime. One of the test protocols within the current certification standard of IEC 61215 is damp heat exposure, which subjects the modules to constant temperature and humidity level for a specific duration (85°C/85%RH for 1000 hours). However, its effectiveness as a reliability test for long-term durability is often debated. This study applies a methodology for calculating the equivalent damp heat testing time that corresponds to a targeted service lifetime (i.e., 30 years) in real-world conditions. The results are presented in the form of a country map, focusing on Turkey, illustrating the variations in testing times across different regions due to local climate conditions. This study shows that applying a single set of conditions for a fixed duration, as applied in the damp heat testing, to all modules with different components and for all climate conditions poses substantial risks when it comes to predicting service lifetime.
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土耳其气候对光伏组件使用寿命的影响调查:绘图法
光伏系统在实际运行过程中的使用寿命是一个亟待解决的问题。模块结构中使用的聚合物材料,尤其是封装材料,很容易发生水解,从而导致电池金属化腐蚀,造成功率损失和使用寿命缩短。IEC 61215 现行认证标准的测试协议之一是湿热暴露,即在特定时间内(85°C/85%RH,1000 小时)将组件置于恒温恒湿环境中。然而,它作为长期耐久性可靠性测试的有效性经常受到争议。本研究采用了一种方法来计算实际条件下与目标使用寿命(即 30 年)相对应的等效湿热测试时间。研究结果以土耳其为重点,以国家地图的形式呈现,说明了不同地区因当地气候条件而导致的测试时间差异。这项研究表明,在所有气候条件下,对不同组件的所有模块都进行湿热测试,并在固定时间内应用单一条件,在预测使用寿命方面存在很大风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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