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Thermal Energy Optimization of Building Integrated Semi-Transparent Photovoltaic Thermal Systems

机译:建筑集成半透明光伏热系统的热能优化

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摘要

Building integrated photovoltaic (BIPV) : The concept where the photovoltaic element assumes the function of power generation and the role of the covering component element has the potential to become one of the principal sources of renewable energy for domestic purpose. In this paper, a Building integrated semitransparent photovoltaic thermal system (BISPVT) system having fins at the back sheet of the photovoltaic module has been simulated. It has been observed that this system produces higher thermal and electrical efficiencies. The increase of wind velocity by fan system and heat exchange surface accelerates the convective heat transfer between the finned surface and the fluid flowing in the duct. The system area of 36.45 m2 is capable of annually producing an amount of thermal energy of 76.66 kWh at an overall thermal efficiency of 56.07 %.
机译:建筑物集成光伏(BIPV):光伏元件承担发电功能并且覆盖组件的作用可能成为家用可再生能源的主要来源之一。在本文中,模拟了建筑物集成的半透明光伏热系统(BISPVT)系统,该系统在光伏模块的背板上具有散热片。已经观察到该系统产生更高的热效率和电效率。风扇系统和热交换表面的风速增加加速了翅片表面与管道中流动的流体之间的对流传热。系统面积为36.45平方米,每年可产生76.66千瓦时的热能,总热效率为56.07%。

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