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Anti-short-circuit device: A new solution for short-circuiting in windcatcher and improvement of natural ventilation performance

机译:防短路装置:一种用于捕风装置短路和改善自然通风性能的新解决方案

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Windcatcher is an effective technique for naturally ventilating a space and improving indoor air quality. A common problem for modern and traditional windcatchers is air short-circuiting. Air-short-circuiting in windcatchers occurs when the air entering through the supply channel immediately exits through the exhaust channel without circulating and mixing inside the enclosed space. Several previous works on windcatchers have observed the "short-circuiting" effect and concluded that it has a negative impact on the ventilation performance however, no work have provided a solution to eliminate this effect. The present study will address this issue by incorporating a component called the anti-short-circuiting device (ASCD) and investigating its potential to eliminate air short-circuiting in windcatchers and improve ventilation performance. Two methods were employed in this research: experimental and Computational Fluid Dynamics (CFD) study. For the experimental work, three scaled models were studied in a wind tunnel. The CFD modelling was validated using the air velocity measurements and good correlation was observed with average error below 10%. The results showed that the ASCD windcatcher with angles between 20 and 80 prevented air-short-circuiting while supplying up to 40-51 1/s per occupant, which is higher than the minimum recommendations of ASHRAE62.2 and BS5925. In addition, the windcatcher without ASCD showed 8% higher CO2 concentration in the room, indicating that the ASCD windcatcher was more effective in removing stale air out of the room. Furthermore, the average air velocity in the room at sitting height with the ASCD windcatcher was 19 28% higher than windcatcher without ASCD. (C) 2016 Elsevier Ltd. All rights reserved.
机译:捕风器是一种有效的自然通风空间和改善室内空气质量的技术。现代和传统捕风器的常见问题是空气短路。当通过供应通道进入的空气立即通过排气通道排出而没有在封闭空间内循环和混合时,会在捕风器中发生空气短路。先前关于捕风器的几项研究已经观察到“短路”效应,并得出结论,这会对通风性能产生负面影响,但是,尚无任何工作可以消除这种效应。本研究将通过引入一个称为防短路装置(ASCD)的组件并研究其消除风挡中空气短路并改善通风性能的潜力来解决此问题。本研究采用两种方法:实验和计算流体动力学(CFD)研究。对于实验工作,在风洞中研究了三个比例模型。使用空气速度测量结果验证了CFD建模,并观察到良好的相关性,平均误差低于10%。结果表明,角度为20至80的ASCD捕风器可防止空气短路,同时为每名乘客提供40-51 1 / s的空气,这比ASHRAE62.2和BS5925的最低建议要高。此外,没有ASCD的捕风器在房间内的CO2浓度要高8%,这表明ASCD的捕风器可以更有效地将陈旧的空气排出房间。此外,使用ASCD风捕器的房间在坐姿时的平均风速比不使用ASCD风捕器的房间平均风速高19 28%。 (C)2016 Elsevier Ltd.保留所有权利。

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