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Flow and dispersion in street intersections

机译:街道交叉口的流量和分散

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摘要

Street intersections play an important role in determining pollutant concentrations in the urban canopy -vehicle emissions often increase in the vicinity of road intersections, and the complex flow patterns that occur within the intersection determine the pollutant fluxes into adjoining streets and into the atmosphere. Operational models for urban air quality therefore need to take account of the particular characteristics of street intersections. We have performed an experimental and numerical investigation of flow and dispersion mechanisms within an urban intersection, and on the basis of our observations and results, we have developed a new operational model for pollutant exchanges in the intersection, which takes account of the non-uniformity of the pollutant fluxes entering and leaving the intersection. The intersection is created by two streets of square cross-section, crossing orthogonally; concentrations were measured by releasing a neutrally buoyant tracer gas from a line source located in one of the streets. As a general result, the numerical simulations agree well with the measurements made in the wind tunnel experiments, except for the case of ground-level concentrations, where the computed concentrations far from the axis of the line source are significantly lower than the measured values. In the first part of the study we investigate the influence of an intersection on the velocity and concentration fields in the adjoining streets; we show that the immediate influence of the intersection extends within the adjoining streets, to a distance of the order of the characteristic size of the streets. A large recirculating vortex is formed at the entrance to the cross-wind streets, and this determines the exchange of pollutants between the streets and the intersection. For some wind directions the average velocity in the street segment between intersections is the same as that which occurs in an infinitely long street with the same wind, but for other angles the average velocity in the finite-length street is significantly lower. The average concentration along a finite-length street is significantly different from that observed in an infinitely long street. In the second part of the study we investigate how the pollutant fluxes in the incoming streets are redistributed amongst the outgoing streets. An analysis of the mean streamlines shows that the flows remain relatively planar, with little variation over the vertical, and we have exploited this result to develop a simple operational model for the redistribution of pollutant fluxes within the intersection. This model has been further adapted to take account of the influence of fluctuations in wind direction over typical averaging periods. The resulting model is used in the street network model SIRANE.
机译:街道交叉路口在确定城市雨棚中的污染物浓度方面起着重要作用-道路交叉路口附近的车辆排放通常会增加,并且交叉路口内发生的复杂流型决定了污染物向相邻街道和大气的通量。因此,城市空气质量的运行模型需要考虑街道交叉口的特殊特征。我们对城市交叉口内的流动和扩散机制进行了实验和数值研究,并根据我们的观察和结果,开发了一种新的交叉口污染物交换操作模型,该模型考虑了不均匀性进入和离开交叉口的污染物通量。交叉路口是由两条横截面为方形且正交的街道创建的。通过从其中一条街道上的线源释放中性浮游示踪气体来测量浓度。总体而言,数值模拟与风洞实验中的测量结果非常吻合,除了地面浓度的情况外,在这种情况下,远离线源轴的计算浓度明显低于测量值。在研究的第一部分中,我们研究了交叉路口对相邻街道的速度场和浓度场的影响。我们表明,交叉路口的直接影响在相邻的街道内延伸,达到街道特征尺寸的数量级。在逆风街道的入口处形成一个大的循环涡流,这决定了街道与交叉口之间污染物的交换。对于某些风向,交叉路口之间的街道段中的平均速度与无限长街道中相同风速下的平均速度相同,但是对于其他角度,有限长度街道中的平均速度要低得多。沿一条有限长度的街道的平均浓度与在一条无限长的街道上观察到的浓度明显不同。在研究的第二部分中,我们研究了传入街道中的污染物通量如何在传出街道之间重新分配。对平均流线的分析表明,这些流保持相对平坦,在垂直方向上几乎没有变化,我们已经利用这一结果为交叉口内污染物通量的重新分布开发了一个简单的操作模型。对该模型进行了进一步调整,以考虑到在典型平均周期内风向波动的影响。所得模型用于街道网络模型SIRANE。

著录项

  • 来源
    《Atmospheric environment》 |2009年第18期|2981-2996|共16页
  • 作者单位

    Laboratoire de Mecanique des Fluides et d'Acoustique, Universite de Lyon, CNRS, Ecole Cencrale de Lyon. INSA Lyon, Universite Claude Bernard Lyon 1, 36, avenue Guy de Collongue, 69134 Ecully, France;

    Dipartimento di Matematica, Politecnico di Torino, Corso Duca degli Abruzzi, 24, 10129 Torino, Italy Golder Associates S.r.l., Via Banfo 43, 10155 Torino, Italy;

    Laboratoire de Mecanique des Fluides et d'Acoustique, Universite de Lyon, CNRS, Ecole Cencrale de Lyon. INSA Lyon, Universite Claude Bernard Lyon 1, 36, avenue Guy de Collongue, 69134 Ecully, France Dipartimento di Ingegneria Aeronautica e Spaziale, Politecnico di Torino, Corso Duca degli Abruzzi, 24, 10129 Torino, Italy Laboratoire de Mecanique des Fluides et d'Acoustique, Universite de Lyon, CNRS, Ecole Centrale de Lyon, INSA Lyon, Universite Claude Bernard Lyon I, 36, avenue Guy de Collongue, 69134 Ecully, France;

    Laboratoire de Mecanique des Fluides et d'Acoustique, Universite de Lyon, CNRS, Ecole Cencrale de Lyon. INSA Lyon, Universite Claude Bernard Lyon 1, 36, avenue Guy de Collongue, 69134 Ecully, France;

    Laboratoire de Mecanique des Fluides et d'Acoustique, Universite de Lyon, CNRS, Ecole Cencrale de Lyon. INSA Lyon, Universite Claude Bernard Lyon 1, 36, avenue Guy de Collongue, 69134 Ecully, France;

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

    street canyon; street intersection; urban air pollution; dispersion models;

    机译:街头峡谷街道路口;城市空气污染;离散模型;

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