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The energy savings potential of using dynamic external louvers in an office building

机译:在办公大楼中使用动态外部百叶窗的节能潜力

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This research is aimed at exploring the influence of external dynamic louvers on the energy consumption of an office building located in Abu Dhabi-UAE. The IES-VR software was used to predict the energy consumption of a representative office module in order to evaluate the overall energy performance of employing external louvers on the south, east and west oriented facades. The use of dynamic facades was compared to another simpler method of using light-sensor controlled light dimmers. The results show that the potential energy savings using light dimming strategy only was 24.4%, 24.45% and 25.19% for the south, east and west oriented facades, respectively. The proposed dynamic louvers system with light dimming strategy achieved energy savings of 34.02%, 28.57% and 30.31% for the south, east and west orientations, respectively. Detailed analysis of the results showed that the facade's optimal static angle was -20° for the south oriented facade and 20 for the east and west oriented facades. Using these fixed optimal angles resulted in slightly lower energy savings than that of the dynamic facades. This would seem to be a good tradeoff between savings in energy running cost and the investment required to install, operate and maintain a dynamic facades system.
机译:这项研究旨在探讨外部动态百叶窗对位于阿布扎比-阿联酋的一栋办公楼能耗的影响。 IES-VR软件用于预测代表性办公模块的能耗,以评估在朝南,朝东和朝西的立面上使用外部百叶窗的总体能源性能。将动态立面的使用与使用光传感器控制的调光器的另一种简单方法进行了比较。结果表明,使用南北向,东向和西向门面的光调光策略仅能分别节省24.4%,24.45%和25.19%。拟议中的具有动态调光策略的动态百叶窗系统在南,东和西方向上分别实现了34.02%,28.57%和30.31%的节能。对结果的详细分析表明,南向立面的最佳静态静角为-20°,东向和西立面的最佳静态静角为20°。与动态立面相比,使用这些固定的最佳角度所产生的节能效果略低。在节能运行成本的节省与安装,操作和维护动态立面系统所需的投资之间,这似乎是一个很好的权衡。

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