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Photovoltaic Degradation Climate Zones

机译:光伏退化气候区

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A large body of previous research indicates that climate affects photovoltaic (PV) degradation both in terms of steady power loss and hazardous failures. However, the geographic distribution of climate stressors has not yet been characterized in a systematic way. Most typically the Köppen-Geiger classification scheme is used for comparing PV degradation across different climates. However, Köppen-Geiger uses temperature and rainfall to develop zones relevant for botany and lacks the ability to distinguish locations based on climate stressors more relevant to PV degradation. Prior work has shown that specific stressors (e.g. high temperature, temperature cycling, damp heat, wind stress and UV exposure) induce multiple PV degradation modes such as solder bond degradation, corrosion by moisture intrusion, wind-induced cell cracking, encapsulant discoloration and others. We introduce a climate zone classification system specific to PV, PhotoVoltaic Climate Zones (PVCZ-2019 or PVCZ) that defines zones based on the geographic distribution in PV stressor intensity. This climate zone scheme provides quantitative thresholds on the climate stress experienced in each zone which can provide a basis for future work on the impact of climate on PV degradation and failure.
机译:大量先前的研究表明,气候会在稳定的功率损耗和危险故障方面影响光伏(PV)的退化。但是,气候压力源的地理分布尚未系统地表征。最典型的是,使用柯本-盖格(Köppen-Geiger)分类方案来比较不同气候下的PV退化。但是,科本-盖格(Köppen-Geiger)使用温度和降雨来开发与植物学相关的区域,并且缺乏根据气候压力因子来区分与光伏退化更相关的位置的能力。先前的工作表明,特定的应力源(例如高温,温度循环,湿热,风应力和紫外线暴露)会导致多种PV退化模式,例如焊点退化,湿气侵入腐蚀,风致电池开裂,密封剂变色等。 。我们引入了特定于PV的气候区分类系统,光伏气候区(PVCZ-2019或PVCZ),该系统根据PV应激源强度的地理分布来定义区域。该气候区方案提供了每个区域所经历的气候压力的定量阈值,这些阈值可为未来研究气候对光伏退化和破坏的影响提供基础。

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