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Degradation in PV encapsulation transmittance: An interlaboratory study towards a climate-specific test

机译:PV封装透射率的降低:针对气候特定测试的实验室间研究

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Reduced optical transmittance of encapsulants resulting from ultraviolet (UV) degradation has frequently been identified as a cause of decreased PV module performance through the life of service in the field. The present module safety and qualification standards, however, apply short UV doses only capable of examining design robustness or “infant mortality” failures. Essential information that might be used to screen encapsulation through product lifetime remains unknown. For example, the relative efficacy of xenon-arc and UVA-340 fluorescent sources or the typical range of activation energy for degradation is not quantified. We have conducted an interlaboratory experiment to provide the understanding that will be used towards developing a climate- and configuration-specific (UV) weathering test. Five representative, known formulations of EVA were studied in addition to one TPU material. Replicate laminated silica/polymer/silica specimens are being examined at 14 institutions using a variety of indoor chambers (including Xenon, UVA-340, and metal-halide light sources) or field aging. The solar-weighted transmittance, yellowness index, and the UV cut-off wavelength, determined from the measured hemispherical transmittance, are examined to provide understanding and guidance for the UV light source (lamp type) and temperature used in accelerated UV aging tests.
机译:紫外线(UV)降解导致密封剂的透光率降低通常被认为是整个使用寿命期间PV组件性能下降的原因。但是,当前的模块安全性和资格标准仅适用于短紫外线剂量,仅能够检查设计的坚固性或“婴儿死亡率”失败。在产品生命周期中可能用于筛选封装的基本信息仍然未知。例如,氙气弧光和UVA-340荧光源的相对功效或降解的典型活化能范围尚未确定。我们进行了一个实验室间实验,以提供将用于开发气候和特定于结构的(UV)耐候性测试的理解。除了一种TPU材料外,还研究了五种代表性的已知EVA配方。正在使用各种室内腔室(包括氙气,UVA-340和金属卤化物光源)或14个机构在14个机构中检查复制的层压二氧化硅/聚合物/二氧化硅样品。根据测得的半球透射率确定日光加权透射率,泛黄指数和UV截止波长,以提供对UV光源(灯类型)和加速UV老化测试中使用的温度的理解和指导。

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