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Daylight Distribution Improvement Using Automated Prismatic Louvre

机译:使用自动棱镜卢浮宫的日光分布改进

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Louvre is a common type of shading devices and has been increasingly used in office buildings. Meanwhile, some reflective types of louvre have been used to provide shade and to redirect daylight deep into buildings interior simultaneously. Furthermore, daylighting systems have been recently engaged with automation control to improve their performance and increase their accuracy. Accordingly, automation of a louvre can optimise daylighting performance, maximising visual comfort, and lighting energy saving. In order to maximise the benefits of daylight, these shading devices should be controlled efficiently using advanced control methods. On the other hand, one of the significant application in daylighting systems is the prismatic panel, which was used in several buildings to improve daylighting due to its easy installation, which also based on redirecting the light into the interior of the buildings, besides its reflective and refractive characteristic. This article presents a feasibility study on the combination of two advanced daylighting designs, i.e., prismatic panel and automated louvre, aiming to achieve simultaneous shading and redirecting daylight for better daylight distribution. In the proposed design, the louvre is comprised of prismatic slats, i.e., prismatic panel as slat. The prismatic louvre is implemented virtually based on an algorithmic system using parametric software Grasshopper, in order to control the automation process parametrically as a first step, and then the daylighting performance is simulated using Radiance as a plug-in to Grasshopper. The optical characteristics of the prismatic slats in an automated louvre is investigated. A comparison has been made in simulation between a prismatic panel and the automated louvres with reflective slats and prismatic slats, respectively, to evaluate their daylighting performance in a south-orientated virtual room in New Cairo. The simulation results are given for the conditions of clear sky on the 21st of June, 21st of September, and 21st of December.
机译:卢浮宫是一种常见的遮阳设备,越来越多地用于办公楼。同时,一些反射类型的卢浮宫被用来提供阴影并同时将日光重定向到建筑物内部。此外,最近已与自动化控制进行了自动化控制,以提高其性能并提高其准确性。因此,LOUVRE的自动化可以优化日光性能,最大化视觉舒适度和照明节能。为了最大限度地提高日光的好处,应使用先进的控制方法有效地控制这些着色设备。另一方面,由于其易于安装,其中在几座建筑物中使用的棱镜面板是棱镜面板,该面板用于改善日光,这也基于其反射,这也基于将光线重定向到建筑物的内部,除了其反射性之外和屈光特征。本文介绍了两个高级日光设计,即棱柱形面板和自动化套装的合并的可行性研究,旨在实现同时阴影和重定向日光以获得更好的日光分布。在拟议的设计中,卢浮宫由棱柱形板条组成,即棱镜面板作为板条。棱镜仪表实际上基于使用参数软件蚱蜢的算法系统来实现,以便参数控制自动化过程作为第一步,然后使用辐射作为插入到蚱蜢的插入模拟日光性能。研究了自动化套筒中棱柱形板条的光学特性。在棱镜面板和具有反射板条和棱镜板的自动化卢瓦茨之间的模拟中进行了比较,以评估其在新开罗的南方虚拟室中的迎风性能。仿真结果是在9月21日和12月21日的6月21日和12月21日的清澈天空的条件。

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