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Method of Deriving Shaded Fraction According to Shading Movements of Kinetic Fa?ade

机译:根据运动淡化阴影运动得出阴影分数的方法

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Exterior dynamic shading devices, installed on “kinetic fa?ades”, generate shaded areas of various shapes on windows according to the shape of the shading elements and the direction of their movement. The calculation of the shaded area is vitally important because it is directly related to the solar heat gain calculation process in building energy assessments. This paper dis-cusses a dynamic calculation method for deriving shaded fractions in consideration of the irregular shapes and unique movements of the shading elements in kinetic fa?ades. The planar-polygon method was adopted for calculating accurate shaded areas on a window generated by irregularly shaped shade elements. To account for movements of the shading elements, the range of movement directions (i.e., rotating, sliding, etc.) was divided into steps of equivalent intervals. Applying these two methods, a shaded area calculation tool for the kinetic fa?ade was developed. Three movement directions of shading devices were chosen for calculating shaded area, and the values of shaded fractions for six kinetic fa?ade types were derived for different fa?ade orientations during the summer and winter solstices. Lastly, to simplify the detailed calculation method, estimation equations for two types of kinetic fa?ade were derived from a trend analysis of the shaded fraction values. This study deals with both detailed and simplified methods (estimation equation) for deriving the shaded fraction. The detailed method can be a more accurate solution in deriving the shaded fractions generated by complex exterior movable shading devices. However, the simplified method can be adopted in the early design stages to review various shading devices within a brief duration of time.
机译:安装在“运动立面”上的外部动态遮光设备会根据遮光元素的形状及其移动方向在窗户上生成各种形状的阴影区域。阴影区域的计算至关重要,因为它与建筑能耗评估中的太阳热量获取计算过程直接相关。本文讨论了一种动态计算方法,该方法考虑了动力学外观中阴影元素的不规则形状和独特运动,从而得出阴影分数。采用平面多边形方法来计算由不规则形状的阴影元素生成的窗口上的准确阴影区域。为了说明阴影元素的运动,将运动方向的范围(即旋转,滑动等)划分为等间隔的步骤。应用这两种方法,开发了用于动力褪色的阴影区域计算工具。选择遮阳设备的三个移动方向来计算阴影面积,并针对夏至冬至的不同渐变方向推导了六种动力渐变类型的阴影分数值。最后,为简化详细的计算方法,从阴影分数值的趋势分析中得出了两种类型的动力衰减估算方程。这项研究涉及推导阴影部分的详细方法和简化方法(估计方程)。详细的方法可以是推导复杂的外部可移动阴影设备生成的阴影部分的更精确解决方案。但是,可以在设计的早期阶段采用简化的方法在短时间内检查各种遮光设备。

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