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Balancing of natural ventilation, daylight, thermal effect for a building with double-skin perforated facade (DSPF)

机译:带有双层穿孔皮肤(DSPF)的建筑物的自然通风,日光和热效应之间的平衡

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The biggest challenge in building design is to optimize the use of natural energy to provide human comfort and consume less energy. Passive facade technologies have been developed with increased complexity for approaching comfort and sustainability aspects. This study discovers performances of a facade system which is an integration of double-skin facade and perforated screens. This study aims to utilize the double-skin perforated facades with air ventilation ports for buildings to optimize energy saving which is also improving daylight and natural ventilation in Japan. The study is based on building simulation software to analyze building performances. The daylight performances are calculated by simulating with DIVA. The natural ventilation and energy performances are simulated on Design Builder. The perforated screens to get daylight without glare is the screens with the perforated percentage of 40%. This research discovers that the perforated percentage of 50% is the optimum rate for balancing natural ventilation and daylight in spring when the weather across Japan is pleasant to draw natural ventilation. The performances in other periods are also presented in this paper. Linear regression models are presented in this paper can be used for predicting volume flow in the pre-design process by temperature difference for different perforated percentages. (C) 2020 Elsevier B.V. All rights reserved.
机译:建筑设计中的最大挑战是优化自然能源的使用,以提供人类舒适感并消耗更少的能源。为了接近舒适性和可持续性方面,已经开发出越来越复杂的无源外墙技术。这项研究发现了幕墙系统的性能,该系统是双层幕墙和穿孔屏风的结合体。这项研究的目的是利用带有空气通风口的双层穿孔玻璃幕墙,以优化建筑节能,同时改善日本的日光和自然通风。该研究基于建筑物模拟软件来分析建筑物性能。通过使用DIVA模拟来计算日光性能。在Design Builder上模拟了自然通风和能源性能。采光良好且无眩光的带孔滤网是具有40%的带孔滤网。这项研究发现,当日本各地的天气宜人时,50%的穿孔率是在春季平衡自然通风和日光的最佳比例。本文还介绍了其他时期的表现。本文介绍的线性回归模型可用于通过不同穿孔百分比的温差来预测预设计过程中的体积流量。 (C)2020 Elsevier B.V.保留所有权利。

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