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PV Thermal Systems: PV Panels Supplying Renewable Electricity and Heat

机译:光伏热力系统:提供可再生电力和热能的光伏面板

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With PV Thermal panels sunlight is converted into electricity and heat simultaneously. Per unit area the total efficiency of a PVT panel is higher than the sum of the efficiencies of separate PV panels and solar thermal collectors. During the last 20 years research into PVT techniques and concepts has been -widespread, but rather scattered. This reflects the number of possible PVT concepts and the accompanying research and development problems, for which it is the general goal to optimise both electrical and thermal efficiency of a device simultaneously. The aspects that can be optimised are, amongst others, the spectral characteristics of the PV cell, its solar absorption and the internal heat transfer between cells and heat-collecting system. Another important level of optimisation is for the PVT device geometry and the integration into a system. The electricity and heat demand and the temperature level of the heat determine the choice for a certain system set-up. With an optimal design, PVT systems can supply buildings with 100 percent renewable electricity and heat in a more cost-effective manner than separate PV and solar thermal systems and thus contribute to the long-term international targets on implementation of renewable energy in the built environment. Copyright
机译:使用光伏热板,阳光可以同时转化为电能和热量。每单位面积的PVT面板的总效率高于单独的PV面板和太阳能集热器的效率之和。在过去的20年中,对PVT技术和概念的研究已经广泛传播,但分散。这反映了可能的PVT概念以及随之而来的研究和开发问题,为此,总的目标是同时优化器件的电效率和热效率。除其他外,可以优化的方面是PV电池的光谱特性,其太阳能吸收以及电池与集热系统之间的内部传热。优化的另一个重要级别是针对PVT设备的几何形状以及将其集成到系统中。电力和热量需求以及热量的温度水平决定了特定系统设置的选择。通过最佳设计,PVT系统可以比单独的PV和太阳能热系统以更具成本效益的方式为建筑物提供100%可再生电力和热能,从而有助于实现在建筑环境中实施可再生能源的长期国际目标。版权

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