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At-grade intersection configuration influences on pedestrian exposure to PM2.5

机译:平面交叉路口配置对行人暴露于PM2.5的影响

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摘要

This study analyses intersection configuration design elements associated with traffic-related air pollution and ranks the three most effective configurations. An assessment methodology for pedestrians PM2.5 exposure associated with crossing traffic hotspots is presented. The quantitative PM2.5 exposure concentration reduction effects of at-grade intersection design with stretched segment, pedestrian bridge and left-turn prohibition are estimated using a new US Environmental Protection Agency general emissions model: a multi-link dispersion model based on the AERMOD model. The results of the case study show that intersection design using a stretched segment has a reverse effect on pedestrian PM2.5 exposure, while the left-turn prohibition and the pedestrian bridge are environmentally friendly options with lower PM2.5 concentrations. In order of effectiveness, the intersection design types can be listed as pedestrian bridge, left-turn prohibition and stretched segment, based on the pedestrian PM2.5 exposure index. This study proposes guidelines and tools that road/intersection designers and engineers can use for quantifying environmental impacts. It also shows that design configurations have the potential to mitigate air quality impacts from traffic.
机译:这项研究分析了与交通相关的空气污染相关的交叉路口配置设计元素,并对三种最有效的配置进行了排名。提出了与穿越交通热点相关的行人PM2.5暴露评估方法。使用新的美国环境保护局通用排放模型:基于AERMOD模型的多链路扩散模型,估算了带延伸路段,人行天桥和左转禁止的平交路口设计的定量PM2.5暴露浓度降低效果。 。案例研究的结果表明,使用延伸段的交叉路口设计对行人PM2.5暴露有相反的影响,而左转禁止和行人天桥则是PM2.5浓度较低的环保选择。为了提高有效性,根据行人PM2.5暴露指数,交叉路口设计类型可以列为人行天桥,左转禁止和延伸段。这项研究提出了道路和交叉口设计人员和工程师可以用来量化环境影响的指南和工具。它还表明设计配置有可能减轻交通对空气质量的影响。

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