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Theoretical comparison of innovative window daylighting devices for a sub-tropical climate using radiance

机译:使用辐射度的亚热带气候下创新型窗户采光装置的理论比较

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摘要

Daylighting in tropical and sub-tropical climates presents a unique challenge that is generally not well understood by designers. In a sub-tropical region such as Brisbane, Australia the majority of the year comprises of sunny clear skies with few overcast days and as a consequence windows can easily become sources of overheating and glare. The main strategy in dealing with this issue is extensive shading on windows. However, this in turn prevents daylight penetration into buildings often causing an interior to appear gloomy and dark even though there is more than sufficient daylight available. As a result electric lighting is the main source of light, even during the day.ududInnovative daylight devices which redirect light from windows offer a potential solution to this issue. These devices can potentially improve daylighting in buildings by increasing the illumination within the environment decreasing the high contrast between the window and work regions and deflecting potentially glare causing sunlight away from the observer. However, the performance of such innovative daylighting devices are generally quantified under overcast skies (i.e. daylight factors) or skies without sun, which are typical of European climates and are misleading when considering these devices for tropical or sub-tropical climates. ududThis study sought to compare four innovative window daylighting devices in RADIANCE; light shelves, laser cut panels, micro-light guides and light redirecting blinds. These devices were simulated in RADIANCE under sub-tropical skies (for Brisbane) within the test case of a typical CBD office space. For each device the quantity of light redirected and its distribution within the space was used as the basis for comparison. In addition, glare analysis on each device was conducted using Weinold and Christoffersons evalglare. The analysis was conducted for selected hours for a day in each season. ududThe majority of buildings that humans will occupy in their lifetime are already constructed, and extensive remodelling of most of these buildings is unlikely. Therefore the most effective way to improve daylighting in the near future will be through the alteration existing window spaces. Thus it will be important to understand the performance of daylighting systems with respect to the climate it is to be used in. This type of analysis is important to determine the applicability of a daylighting strategy so that designers can achieve energy efficiency as well the health benefits of natural daylight.
机译:热带和亚热带气候中的采光提出了一个独特的挑战,而设计师通常对此并不了解。在澳大利亚的布里斯班这样的亚热带地区,一年中的大部分时间都是晴天,几乎没有阴天,因此窗户很容易成为过热和眩光的源头。解决此问题的主要策略是在Windows上进行大量着色。但是,这反过来又阻止了日光渗透到建筑物中,即使有足够的日光可用,它也常常使内部显得阴暗。因此,即使在白天,电照明也是主要的光源。 ud ud创新的日光设备可以将窗户的光线重定向,为解决这一问题提供了一种可能的解决方案。这些设备可以通过增加环境中的照明度,减少窗户和工作区域之间的高对比度以及使可能使太阳光远离观察者的潜在眩光偏转来改善建筑物的日光。然而,这种创新的采光设备的性能通常在阴天(即日光因素)或没有阳光的天空下进行量化,这是欧洲气候的典型特征,在考虑将这些设备用于热带或亚热带气候时会产生误导。 ud ud这项研究旨在比较RADIANCE中的四种创新型窗户采光设备;灯架,激光切割面板,微型导光板和重新定向光的百叶窗。在典型的CBD办公空间的测试案例中,这些设备在RADIANCE的亚热带天空(布里斯班)下进行了仿真。对于每个设备,重新定向的光量及其在空间中的分布均用作比较的基础。另外,使用Weinold和Christoffersons evalglare对每个设备进行眩光分析。在每个季节的一天中,选择特定时间进行分析。 ud ud人类一生中将要使用的大多数建筑物已经建造完毕,并且对这些建筑物中的大多数进行大规模改造的可能性不大。因此,在不远的将来改善日光的最有效方法将是改变现有的窗户空间。因此,重要的是要了解采光系统相对于要使用的气候的性能。这种类型的分析对于确定采光策略的适用性非常重要,这样设计人员就可以实现能源效率以及对健康的好处。自然光。

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