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The influence of building height variability on pollutant dispersion and pedestrian ventilation in idealized high-rise urban areas

机译:理想化的高层建筑中建筑物高度变化对污染物扩散和行人通风的影响

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摘要

Studies are still required to understand how rural/marine wind remove ground-level pollutants released uniformly in street networks of high-rise urban areas. The link between building height variability and pollutant removal process still remains unclear. Several idealized urban-like neighbourhoods made of 9-row and 18-row small-scale high-rise square arrays (building width 8 = street width W, building packing density λ_p = 0.25) were first numerically studied with a parallel approaching wind and neglecting thermal effects. Normalized pollutant transport rates and pedestrian purging flow rate were applied to quantify the contribution of pollutant removal by mean flow and turbulent diffusion and their net purging capacity. Results show that the prediction of isothermal turbulent flows agreed generally well with wind tunnel data. For 9-row arrays with building height variations (standard deviation of 0-57.1%) and the same average canopy height (H_0 = 2.33W), pollutant removal mainly depends on mean flows. Larger standard deviations tend to induce better pedestrian ventilation. In comparison to small and large standard deviations, medium values of 14.3-42.9% may experience smaller purging capacity by horizontal mean flows but significantly enhance that by vertical mean flows. For arrays with uniform heights, lowering aspect ratios (H/W = 2.33 and 2.67-1.5) or increasing street lengths (9-row to 18-row) may enhance the contribution of removing pollutants by turbulent diffusions across canopy roofs which may be similarly important as that by mean flows. Although further investigations are still required, this paper clarifies the relationship between building layouts, height variability and removal potential of ground-level pollutants in high-rise urban-like geometries.
机译:仍需要进行研究以了解农村/海洋风如何去除高层城市街道网络中均匀释放的地面污染物。建筑高度可变性和污染物去除过程之间的联系仍然不清楚。首先通过平行进风和忽略的数值研究了由9行和18行小型高层正方形阵列(建筑物宽度8 =街道宽度W,建筑物堆积密度λ_p= 0.25)构成的几个理想化的类似城市的街区热效应。应用归一化污染物传输速率和行人净化流量来量化污染物通过平均流量和湍流扩散及其净净化能力的贡献。结果表明,等温湍流的预测与风洞数据基本吻合。对于具有建筑物高度变化(标准偏差为0-57.1%)和相同的平均顶篷高度(H_0 = 2.33W)的9行阵列,污染物的去除主要取决于平均流量。标准偏差越大,行人通风越好。与较小和较大的标准偏差相比,水平平均值流的中值14.3-42.9%可能会有较小的吹扫能力,而垂直平均值流的中值会大大增强。对于高度均匀的阵列,降低长宽比(H / W = 2.33和2.67-1.5)或增加街道长度(9行至18行)可能会通过在天蓬屋顶上的湍流扩散而增加去除污染物的作用,这可能类似重要的是,这意味着尽管仍需要进一步研究,但本文阐明了高层城市样几何结构中建筑物布局,高度可变性和地面污染物清除潜力之间的关系。

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  • 来源
    《Building and Environment》 |2012年第10期|p.346-360|共15页
  • 作者单位

    Department of Mechanical Engineering, The University of Hong Kong, Pokfulam Road, Hong Kong, China Guangdong Provincial Key Laboratory of Building Energy Efficiency and Application Technologies, Guangzhou University, Guangzhou, China;

    Department of Mechanical Engineering, The University of Hong Kong, Pokfulam Road, Hong Kong, China;

    Faculty of Engineering and Sustainable Development, University of Gaevle, SE-80176 Gaevle, Sweden;

    Dipartimento di Scienze e Tecnologie Biologiche ed Ambientali, University of Salento, S.P. 6 Lecce-Monteroni, 73100 Lecce, Italy;

    Dipartimento di Scienze e Tecnologie Biologiche ed Ambientali, University of Salento, S.P. 6 Lecce-Monteroni, 73100 Lecce, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    building height variation; high-rise building arrays; pollutant dispersion; CFD simulations; pedestrian ventilation;

    机译:建筑高度变化;高层建筑阵列;污染物扩散;CFD模拟;行人通风;

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