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Daylighting Efficiency of External Perforated Solar Screens: Effect of Screen Axial Rotation under Clear Skies

机译:外穿太阳能屏幕的灯火效率:透明天空下屏幕轴向旋转的影响

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This paper aims at developing solar screens for use in front of windows under the clear desert skies. These external perforated panels revitalize a traditional solution named "Mashrabeya". They contribute to sustainability through utilization of natural light. In this paper, series of experiments were conducted using Radiance software, The impact of solar screen axial rotation on indoor daylighting of a residential setting was investigated. The effectiveness of the axial rotation was demonstrated. Screen influence on daylighting was strongly dependent on the orientation of the window and time. Illuminance adequacy was tested. The North and South orientations with upward and downward horizontal axial rotation were most affected when the rotation angle increased from 0° to 30°, especially in the summer season. In the East, the winter season was the most affected by the rotation. As a response to changing the rotation angle, a linear increase relationship was observed in all orientations.
机译:本文旨在开发太阳能屏幕,用于清澈的沙漠天空下的窗户前。这些外穿孔面板振兴了一个名为“mashrabeya”的传统解决方案。通过利用自然光,它们有助于可持续性。本文采用光线软件进行了一系列实验,研究了太阳能屏幕轴向旋转对室内日光的影响进行了研究。证明了轴向旋转的有效性。对日光的屏幕影响力强烈依赖于窗口和时间的方向。照明充足性得到了测试。当旋转角度从0°增加到30°时,北方和向下水平轴向旋转的北方和南方取向最受影响,特别是在夏季。在东方,冬季受旋转受影响最大的影响。作为改变旋转角度的响应,在所有方向中观察到线性增加关系。

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