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Evaluation of ventilation performance of monitor roof in residential area based on simplified estimation and CFD analysis

机译:基于简化估计和CFD分析的居住区监控屋顶通风性能评估

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Wind-induced natural ventilation is beneficial to assure thermal comfort and to reduce cooling load in the hot and humid summertime. In the urban environment, where buildings are grouped closely, it is often difficult to obtain a large enough wind pressure difference to drive the natural ventilation. As architectural feature, this work focuses on "monitor roof which has the potential to promote wind-induced natural ventilation, and aims to evaluate its ventilation performance. This paper analyses a two-story residential building model equipped with a monitor roof which is built in a long building row, assuming a densely populated residential area. Since the monitor roof shows complicated flow resistance, the conventional method to predict flow rate cannot be easily applied. Based on the correlation between internal pressure and flow rate, and wind pressure coefficients obtained from previous work, a simplified estimation method of flow rate is first applied in this paper. In addition, more detailed flow characteristics inside the room are analysed by Computational Fluid Dynamics using a Reynolds-Averaged Navier-Stokes model, and a certain level of accuracy is verified by comparison with wind tunnel measurement. By comparing flow rate between numerical simulation and measurement, the validity of the simplified estimation method is also verified. To analyse substantial ventilation performance including the effect of turbulence, numerical simulation using Large Eddy Simulation is also performed and particle tracking technique is applied. Based on those results, Purging Flow Rate is evaluated, and it is finally shown that the monitor roof can work well to promote natural ventilation.
机译:在自然炎热和潮湿的夏季,风诱导的自然通风有益于确保热舒适性并减少冷却负荷。在建筑物紧密组合的城市环境中,通常很难获得足够大的风压差来驱动自然通风。作为建筑的特色,这项工作着眼于“具有促进风诱导自然通风的监控屋顶,并旨在评估其通风性能。本文分析了一个两层的装有监控屋顶的住宅模型。假设居住区人口稠密,建筑物会很长;由于监控屋顶显示出复杂的流阻,因此无法轻松应用传统的预测流量的方法;基于内部压力与流量之间的相关性,以及从中获得的风压系数在先前的工作中,本文首先应用了一种简化的流量估算方法,此外,使用雷诺平均Navier-Stokes模型通过计算流体动力学分析了房间内更详细的流量特性,得出了一定的准确度。通过与风洞测量进行比较来验证通过比较数值模拟和测量之间的流量还验证了简化估计方法的有效性。为了分析包括湍流影响在内的实质通风性能,还使用大涡模拟进行了数值模拟,并应用了粒子跟踪技术。根据这些结果,对吹扫流量进行了评估,最后表明监控器顶棚可以很好地促进自然通风。

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