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Wind Tunnel Study for Estimating Outdoor Ventilation in a Dense Low-Rise Building Area

机译:密集低层建筑区域风洞估算风洞研究

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To accurately estimate the natural ventilation of outdoor spaces surrounded by low-rise buildings using a wind tunnel requires correct representation of the natural wind regime combined with appropriately scaled building models and testing method. Existing outdoor ventilation studies are largely based on wind speed and estimated air change rates. Wind speeds mainly influence: peoples' comfort, safety in pedestrian areas, the heat transfer between outdoor surfaces and airflow, and evaporation from wet surfaces. Studies of air change rates in outdoor spaces (for regions below surrounding roof height) are mainly related to the dispersion and/or removal of pollutants, moisture and hot air. This paper considers the application of wind tunnel studies to estimate the ventilation of outdoor spaces. It also considers the role of CO_2 as a tracer gas for such studies. It concludes that to accurately estimate the ventilation of outdoor areas by means of a wind tunnel analysis, the natural wind properties in the wind tunnel model must be correctly related to the local terrain category. Buildings themselves can be represented by low cost small scale models constructed from expanded polystyrene. The CO_2 tracer gas method is a safe, low cost and efficient quantitative test method for estimating the ventilation of outdoor spaces using a wind tunnel.
机译:为了使用风洞准确估算低层建筑周围的室外空间的自然通风,需要正确表示自然风态,并结合适当比例的建筑模型和测试方法。现有的室外通风研究主要基于风速和估计的换气率。风速主要影响:人们的舒适度,行人专用区的安全性,室外表面与气流之间的热传递以及湿表面的蒸发。对室外空间(周围屋顶高度以下的区域)中空气变化率的研究主要与污染物,湿气和热空气的扩散和/或清除有关。本文考虑了风洞研究在估计室外空间通风方面的应用。它还考虑了CO_2作为此类研究的示踪气体的作用。结论是,要通过风洞分析准确估算室外区域的通风情况,风洞模型中的自然风属性必须与当地地形类别正确相关。建筑物本身可以用由膨胀聚苯乙烯构造的低成本小规模模型表示。 CO_2示踪气体法是一种安全,低成本,高效的定量测试方法,用于评估使用风洞的室外空间的通风情况。

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