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Development and integration of innovative low-cost PV windows based on dye sensitized solar cells technology: Application in Morocco

机译:基于染料敏化太阳能电池技术的创新型低成本光伏窗户的开发和集成:在摩洛哥的应用

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In This paper, we have discussed one example of the third generation solar cells, called nanocrystalline dye sensitized solar cells DSSC or Gratzel cell. An extensive literature study was conducted and the results show that the Nanocrystalline dye sensitized solar cells DSSC are considered as a novel and low cost photovoltaic technology. Compared with silicon solar cells, they are insensitive to impurities in fabrication process, which accelerates a transition from research laboratory to the mass production line. From the perspective of application, low weight and flexibility of DSSCs are desirable for the portable electronic device. It is found that DSSCs work better than silicon solar cells in the darker condition, for example, in the dawn and dusk, and also the overall efficiency is not seriously affected in the high temperature. In addition, the transparency and varied color of DSSCs are very important properties that make these cells suitable for a variety of important applications such as, windows, sunroofs, cellphones, etc.... The application of DSSC as smart window has very important impact on the electricity generation on buildings. However, its application on the glass window can affect the transmission of sun light to the house and decreases the heat gain provided by the sun [2]. In this work, a detailed simulation using Design builder software is conducted to compare the energetic consumption and internal gain received by buildings with transparent windows, and buildings with colored windows.
机译:在本文中,我们讨论了第三代太阳能电池的一个示例,称为纳米晶染料敏化太阳能电池DSSC或Gratzel电池。进行了广泛的文献研究,结果表明,纳米晶染料敏化太阳能电池DSSC被认为是一种新颖且低成本的光伏技术。与硅太阳能电池相比,它们对制造过程中的杂质不敏感,从而加速了从研究实验室到批量生产线的过渡。从应用的角度来看,对于便携式电子设备,期望DSSC的低重量和柔性。发现在较暗的条件下,例如在黎明和黄昏,DSSC比硅太阳能电池更好地工作,并且在高温下总体效率没有受到严重影响。此外,DSSC的透明度和颜色的变化是非常重要的属性,这使得这些电池适用于各种重要应用,例如窗户,天窗,手机等。DSSC作为智能窗户的应用具有非常重要的影响在建筑物上发电。然而,将其应用在玻璃窗上会影响太阳光向房屋的传输,并降低太阳提供的热量[2]。在这项工作中,使用Design Builder软件进行了详细的模拟,以比较具有透明窗户的建筑物和具有彩色窗户的建筑物的能量消耗和内部收益。

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