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Predicting daylight illuminance on inclined surfaces using sky luminance data

机译:使用天空亮度数据预测倾斜表面上的日照度

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Daylight illuminance, particularly on vertical surfaces, plays a major role in determining and evaluating the daylighting performance of a building. In many parts of the world, however, the basic daylight illuminance data for various vertical planes are not always readily available. The usual method to obtain diffuse illuminance on tilted planes would be based on inclined surfaces models using data from the horizontal measurements. Alternatively, the diffuse illuminance on a sloping plane can be computed by integrating the luminance distribution of the sky 'seen' by the plane. This paper presents an approach to estimate the vertical outdoor illuminance from sky luminance data and solar geometry. Sky luminance data recorded from January 1999 to December 2001 in Hong Kong and generated by two well-known sky luminance models (Kittler and Perez) were used to compute the outdoor illuminance for the four principal vertical planes (N, E, S and W). The performance of this approach was evaluated against data measured in the same period. Statistical analysis indicated that using sky luminance distributions to predict outdoor illuminance can give reasonably good agreement with measured data for all vertical surfaces. The findings provide an accurate alternative to determine the amount of daylight on vertical as well as other inclined surfaces when sky luminance data are available.
机译:在确定和评估建筑物的采光性能方面,尤其是在垂直表面上的日光照度起着重要作用。但是,在世界许多地方,并非总是可以随时获得各种垂直平面的基本日光照度数据。在倾斜平面上获得漫反射照度的常用方法是基于倾斜表面模型,其中使用来自水平测量的数据。可替代地,可以通过对在平面上“看见”的天空的亮度分布进行积分来计算在倾斜平面上的漫射照度。本文提出了一种从天空亮度数据和太阳几何形状估算垂直室外照度的方法。使用1999年1月至2001年12月在香港记录的由两个著名的天空亮度模型(Kittler和Perez)生成的天空亮度数据来计算四个主要垂直平面(N,E,S和W)的室外照度。 。根据同期测量的数据评估了该方法的性能。统计分析表明,使用天空亮度分布来预测室外照度可以使所有垂直表面的测量数据合理地吻合。当可获得天空亮度数据时,这些发现为确定垂直以及其他倾斜表面上的日光量提供了一种准确的选择。

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