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Backsheet Degradation under Salt Damp Heat Environments - Enabling Novel and Innovative Solar Photovoltaic Systems Design for Tropical Regions and Sea Close Areas

机译:盐水湿热环境下的底片降解 - 为热带地区和海上近区提供新颖和创新的太阳能光伏系统设计

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Photovoltaics technology actually makes the most sense in tropical regions where the sunlight intensity is maximum. Yet traditional PV systems are mostly designed for the northern hemisphere markets, as these are the biggest markets of solar PV systems currently. These PV systems are designed to withstand gusty winds, heavy snows and severe hail impacts. This is thus largely an over design for use in tropical regions. At the same time, this design is also not necessarily the most optimum for tropical regions with many islands, like Indonesia. Exposure to high-angle sunlight onto the PV systems could lead to lower photon capture to the solar cells, while interactions of these traditionally designed PV systems with extreme acid rains and heavy concentration of salt and minerals from seas could lead to premature degradation of the polymer materials inside the PV system. This could in turn instigate corrosion in the metallic interconnects which might then cause electrical shorts and charging/burning and possibly even big fires. Some of our preliminary results on material research that are the pre-requisites of novel and innovative PV system design for these unique regions will be presented.
机译:光伏技术实际上在热带地区最有意义,其中阳光强度最大。然而,传统的光伏系统主要为北半球市场设计,因为这些是目前的太阳能光伏系统最大的市场。这些光伏系统旨在承受蠕动的风,重雪和严重的冰雹影响。因此,这在很大程度上是在热带地区使用的设计。与此同时,这种设计也不一定是热带地区的最佳热带地区,许多岛屿,如印度尼西亚。暴露在PV系统上的高角度阳光可能导致光子捕获到太阳能电池,而这些传统设计的PV系统的相互作用具有极端的酸性降雨和来自海洋的盐和矿物质的重量浓度可能导致聚合物过早降解PV系统内的材料。这可以反过来迫使金属互连中的腐蚀,然后可能会导致电气短路和充电/燃烧,并且可能甚至是大火。我们将提出一些关于材料研究的初步结果,这些研究是这些独特地区的新颖和创新的PV系统设计的先决条件。

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