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Conventional fixed shading devices in comparison to an electrochromic glazing system in hot, dry climate

机译:与炎热干燥气候下的电致变色玻璃系统相比,传统的固定遮阳设备

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摘要

Electrochromic glazing or exterior shading devices offer shading of the intense direct sun, reduce glare, and improve the daylight luminance within buildings. Additionally, they are important factors affecting energy performance of buildings as they impact the heating and cooling consumption. This analysis investigated the performance and the effectiveness of electrochromic glazing to prevent unwanted solar heat gains from entering a conditioned space. Then, these performances are compared to those offered by conventional fixed exterior shading devices in identical conditions. The aim of this analysis is to provide architects and designers with general guidance and appropriate design strategies for different window treatments and shading techniques during early design stages in hot, dry climate. A typical office building is modeled using DesignBuilder software. Building envelope characteristics, internal loads, and operating schedules including schedules for equipment, occupancy, interior lighting, heating, ventilating, air conditioning, and weather data are all unchanged throughout the simulation process. The windows shading condition and the glazing type are the only varying parameters. The output data show that electrochromic glazing provides the best performance in reducing solar heat gains compared to other tested shading conditions.
机译:电致变色玻璃窗或外部遮阳设备可遮挡强烈的直射阳光,减少眩光并改善建筑物内的日光亮度。此外,它们是影响建筑物能源性能的重要因素,因为它们会影响供暖和制冷消耗。这项分析研究了电致变色玻璃的性能和有效性,以防止多余的太阳能热量进入条件空间。然后,将这些性能与相同条件下常规固定外部遮阳设备提供的性能进行比较。该分析的目的是在炎热干燥的气候的早期设计阶段,为建筑师和设计师提供针对不同窗户处理和遮光技术的一般指导和适当的设计策略。典型的办公大楼是使用DesignBuilder软件建模的。在整个仿真过程中,建筑物围护结构的特性,内部负荷以及包括设备,占用,室内照明,供暖,通风,空调和天气数据的时间表在内的运行时间表都保持不变。窗户的遮光条件和玻璃类型是唯一变化的参数。输出数据表明,与其他经过测试的遮光条件相比,电致变色玻璃在降低太阳热能方面提供了最佳性能。

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