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Controlling venetian blinds based on parametric design; via implementing Grasshopper’s plugins: a case study of an office building in Cairo

机译:根据参数设计控制百叶窗;通过实现Grasshopper的插件实现:以开罗办公楼为例

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摘要

Venetian blinds are common type of shading devices and are increasingly operated automatically to overcome the limitations of using manual operation. Automated blinds need to be controlled to maximize benefits of daylight on the aspects of redirecting sunlight, occupant comfort and energy consumption. However, the common control methods are focused on minimizing negative impacts of daylight, but they might fail to maximize the positive impacts of daylight. They may often inaccurately predict a blind’s position, resulting in the undesirable blockage of useful daylight needed.\ud\udThis paper puts forward a new control method for automated venetian blinds to optimize the utility of daylight. The proposed control method can not only protect occupants from direct solar glare but also maximize daylight penetration into office rooms based on algorithmic methods. The proposed control method is designed to reflect the incident sunlight into the ceiling, then the reflected light acts as a main source of light for the occupants. The reflecting slats respond to the sun altitudes parametrically, in an individual heliotropic response, which can keep the reflected light relatively steady during daytime. Consequently, this process can exploit the optimal use of natural daylight as a main source of lighting and provide shade simultaneously.
机译:百叶窗是遮阳设备的常见类型,并且越来越多地自动操作以克服使用手动操作的局限性。需要控制自动百叶窗,以最大程度地利用日光在改变太阳光的方向,乘员的舒适度和能耗方面。但是,常见的控制方法侧重于最小化日光的负面影响,但是它们可能无法最大化日光的正面影响。他们可能经常不准确地预测百叶窗的位置,从而不希望地阻塞了所需的有用日光。\ ud \ ud本文提出了一种用于自动百叶窗的新控制方法,以优化日光的利用率。所提出的控制方法不仅可以保护乘员免受阳光直射,而且可以基于算法将日光最大程度地穿透到办公室中。所提出的控制方法旨在将入射的阳光反射到天花板上,然后反射的光充当乘员的主要光源。反射板条在单个日光响应中以参数方式响应太阳高度,这可以使反射光在白天相对稳定。因此,此过程可以充分利用自然光作为主要照明光源,并同时提供阴影。

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