预测透明圆顶被动式日光集热器的透光、吸收和反射特性

F. Sulaiman, A. Ahmad, A. Z. Ahmed
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引用次数: 2

摘要

采光系统是一种特殊类型的太阳能集热器,可用于通过将日光引入建筑物来为建筑物内部提供照明。采光和热负荷是被动式集热器设计中非常重要的设计问题。建立了一个数学模型来预测透明圆顶被动日光集热器在直接辐射和漫射辐射下的可见光透过率、吸收率和反射率。该模型是基于跟踪光束和漫射辐射通过圆顶表面的传输。除其他因素外,日光收集器的几何形状对采光贡献和太阳能热增益的数量有影响。最佳设计只能通过仔细了解通过圆顶几何形状的光传输过程来完成。本文描述了一个透明圆顶被动式日光集热器设计的数学模型,该集热器采用狭窄的太阳能光管穿透屋顶,以提供从建筑物外部到内部的高透射光。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Predicting transmittance, absorptions and reflectance characteristics for the design of transparent dome passive daylight collector
Daylighting systems are a particular type of solar collector which may be used to provide illumination for the interior of a building by directing daylight into the building. Daylighting and thermal loads are very important design issues for passive daylight collector design. A mathematical model has been developed to predict the visible solar transmittance, absorptance and reflectance of a transparent domed passive daylight collector for both direct and diffuse radiation. The model is based on tracking the beam and diffuse radiation transmission through the dome surface. The shape of the daylight collector geometry, among other factors, has an effect on the amount of daylighting contribution and solar heat gains. The optimum design can only be accomplished by a careful understanding of light transmission process though the dome geometry. This paper describes the mathematical modelling for the design of a transparent domed passive daylight collector with a narrow solar light pipe penetrating the roof to provide a high transmission of light from the exterior to the interior of the building.
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