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Influence of roof topology on the air distribution and ventilation effectiveness of wind towers

机译:屋顶拓扑结构对风塔空气分布和通风效率的影响

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The performance of wind towers, which depends on external wind speed, is often reduced when still air conditions prevail. As a solution to this, this research used a combination of Computational Fluid Dynamics (CFD) and wind tunnel tests to evaluate the influence of five different roof configurations - flat roof, pitched roof, narrowed roof, curved roof and tilted curved roof - on the ventilation performance of commercial wind towers to identify the potential of accelerating wind passively to enhance natural ventilation within a building's microclimate. This assessment was carried out by analysing the static pressure, supply air velocity, supply flow rate, mean age of air and air change effectiveness which were computed for each model and compared against the CIBSE Environmental Design Guide and ASHRAE 129 set standards. This was followed by the evaluation of supply flow rates under varying wind directions from 0 degrees to 90 degrees. The results revealed that the narrowed roof produced an air change effectiveness of 0.96 and flow rates greater than 10L/s/person when the wind direction was prevalent at 0 degrees and 45 degrees, thus being the only roof that complied with the recommended guidelines. Conclusively, roof design being a strong influential factor upon wind properties is a keystone which, if meticulously designed, can be used to passively enhance the air distribution and ventilation effectiveness of wind towers. (C) 2016 Elsevier B.V. All rights reserved.
机译:当静止的空气条件盛行时,取决于外部风速的风塔的性能通常会降低。作为对此的解决方案,本研究结合了计算流体动力学(CFD)和风洞测试来评估五种不同屋面配置(平屋顶,斜屋顶,窄屋顶,弯曲屋顶和倾斜弯曲屋顶)的影响。商业风塔的通风性能,以识别被动加速风的潜力,以增强建筑物微气候内的自然通风。评估是通过分析每种模型计算的静压,送风速度,送风速度,平均空气使用年限和换气效率进行的,并与CIBSE环境设计指南和ASHRAE 129设定标准进行了比较。随后评估风向从0度到90度变化下的供应流量。结果表明,当风向在0度和45度时,变窄的屋顶产生的换气效率为0.96,流量大于10L / s /人,因此是唯一符合推荐准则的屋顶。总之,屋顶设计是影响风能的重要因素,如果设计得当,它可以用来被动地提高风塔的空气分布和通风效率,这是基石。 (C)2016 Elsevier B.V.保留所有权利。

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