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Optimum design of shading-type building-integrated photovoltaic claddings with different surface azimuth angles

机译:不同表面方位角的遮阳型建筑一体化光伏覆面的优化设计

摘要

The shading-type BIPV claddings can act as power generators as well as external shading devices and insulation panels. There is little available information about the impacts of orientations and inclinations on the combined energy effects of the shading-type BIPV claddings, including the power output of PV modules, the cooling load reduction of windows and concrete walls. It is worth studying the effects of different shading-type BIPV cladding designs on the total energy saving in order to maximize the system's energy performance. By considering the meteorological conditions in Hong Kong, the energy effect of the shading-type BIPV claddings with different surface azimuth angles, in terms of electricity generation and cooling energy consumption reduction is analyzed in this paper. Based on the investigations, the optimum design of the shading-type BIPV claddings for different orientations can be achieved.
机译:遮阳型BIPV覆层既可以用作发电机,也可以用作外部遮阳设备和绝缘板。关于取向和倾斜度对遮光型BIPV覆层的综合能量效应的影响的可用信息很少,包括PV模块的功率输出,窗户和混凝土墙的冷却负荷降低。值得研究不同遮光类型的BIPV覆层设计对总节能量的影响,以使系统的能源性能最大化。通过考虑香港的气象条件,从发电量和冷却能耗的减少两方面分析了具有不同表面方位角的遮光型BIPV覆层的能量效应。根据调查,可以实现不同方向的遮光型BIPV覆层的优化设计。

著录项

  • 作者

    Sun L; Lu L; Yang H;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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