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Sound wall barriers: Near roadway dispersion under neutrally stratified boundary layer

机译:声墙屏障:在中性分层边界层下的近巷道扩散

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With the passage of California Senate Bill 375, which motivates infill development near transit hubs, there is the potential to increase vehicle congestion in residential communities and increase in human exposure to toxic mobile source pollutants. Among all the mitigation strategies that protect near roadway residents from health-affecting vehicular emissions (e.g. separating sensitive receptors from high traffic roadways), this paper discusses the impact of sound wall barriers (SBs) in reducing the air pollution exposure of nearby residents. To date, there have been some studies done to understand the impact of these structures on dispersion of vehicular emissions; however, no definitive conclusion has been drawn yet. The main objective of this paper is to provide more information and details on flow and dispersion affected by barriers through a systematic laboratory simulation of plume dispersion using a water channel. Three sets of experiments were conducted: (1) plume visualizations, (2) plume concentration measurements, and (3) flow velocity measurements. Results from this study shows that the deployment of sound barriers induces a recirculating flow over the roadway which transports the surface released emissions to the upwind side of the roadway, and then shifts the plume upward through an induced updraft motion. Plume visualizations clearly demonstrate that the presence of SBs induce significant vertical mixing and updraft motion on the roadway which increases the initial plume dilution and plume height and consequently results in reduced downwind ground level concentrations. Although different SB configurations result in different localized flow patterns, the dispersion pattern does not change significantly after several SB heights downwind of the roadway. (C) 2015 Elsevier Ltd. All rights reserved.
机译:随着加利福尼亚州参议院375号法案的通过,该法案促进了交通枢纽附近的填充物开发,有可能增加居民社区的车辆拥堵并增加人类对有毒移动源污染物的暴露。在所有保护附近道路居民免受影响健康的车辆排放的缓解策略中(例如,将敏感受体与交通繁忙的道路分开),本文讨论了声墙屏障(SBs)对减少附近居民空气污染的影响。迄今为止,已经进行了一些研究以了解这些结构对车辆排放物扩散的影响。但是,尚未得出明确的结论。本文的主要目的是通过使用水通道对烟羽扩散进行系统的实验室模拟,以提供更多有关障碍物影响的流量和扩散的信息和细节。进行了三组实验:(1)羽流可视化,(2)羽流浓度测量和(3)流速测量。这项研究的结果表明,声屏障的部署引起了车道上的再循环流动,该流动将地表释放的排放物输送到车道的上风侧,然后通过诱导的上风运动向上移动烟羽。羽流可视化清楚地表明,SB的存在会在车道上引起明显的垂直混合和上升气流,这会增加初始羽流稀释度和羽流高度,从而导致顺风地面浓度降低。尽管不同的SB配置会导致不同的局部流动模式,但在车道顺风几个SB高度后,分散模式不会显着变化。 (C)2015 Elsevier Ltd.保留所有权利。

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