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Impact of road grade on vehicle speed-acceleration distribution, emissions and dispersion modeling on freeways

机译:道路坡度对高速公路上的车速加速度分布,排放和弥散模型的影响

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This study explores how grade impacts vehicle operations, emissions, and pollutant exposures along freeways. Vehicle speed trajectories from freeways are classified by average speed, indicating the traffic conditions experienced by the vehicle involved. The study describes how the shape characteristics of the speed-acceleration joint distribution (SAJD) is changed in response to road grade. Under uncongested conditions, operations are sensitive to grade changes, with vehicles observed to operate more "gently" (lower acceleration rates) as grade increases. Given clear descriptions of grade impact on operations on freeways, the study explores the impact of integrating grade, as well as the grade-SAJD correlation on modeling of emissions. A case study of a 9.5-mile freeway corridor was conducted to explore the potential impacts on near-road PM2.5 dispersion modeling. For comparative purposes, emissions are estimated for scenarios that incorporate both grade and the correlated changes in operating conditions (observed conditions), ignoring grade but employing observed operating conditions, and including grade but ignoring changes in operating conditions resulting from grade. Comparison the dispersion results with the National Ambient Air Quality Standards (NAAQS) indicates that the bias caused by ignoring road grade is non-negligible. In contrast, the bias caused by applying actual grade, but ignoring grade-SAJD correlation is much less significant. The study confirms the integrating road grade may be critical for transportation conformity and PM2.5 hotspot analysis. While ignoring grade-SAJD correlation did not seem to cause significant bias in near-road air quality modeling that would require serious attention, unless concentrations are close to a NAAQS limit.
机译:这项研究探讨了坡度如何影响高速公路上的车辆运行,排放和污染物暴露。高速公路的车速轨迹按平均速度分类,表明所涉车辆所经历的交通状况。这项研究描述了如何根据道路坡度改变速度-加速度联合分布(SAJD)的形状特征。在不拥挤的情况下,操作对坡度变化很敏感,观察到随着坡度的增加,车辆将更“缓慢地”(较低的加速度)运行。给出了坡度对高速公路运营的影响的清晰描述,该研究探讨了坡度整合以及坡度与SAJD相关性对排放建模的影响。进行了一个9.5英里高速公路走廊的案例研究,以探讨对近路PM2.5弥散模型的潜在影响。为了进行比较,对结合了坡度和运行条件(观察条件)的相关变化的情景进行了估算,忽略了坡度但采用了观察到的运行条件,包括坡度但忽略了坡度导致的运行条件变化。将分散结果与《国家环境空气质量标准》(NAAQS)进行比较表明,忽略道路坡度造成的偏差是不可忽略的。相反,由于应用实际等级而导致的偏差却忽略了等级与SAJD的相关性就不那么重要了。该研究证实,整合的道路坡度对于运输一致性和PM2.5热点分析可能至关重要。除非浓度与SAJD的相关性似乎没有引起近路空气质量建模的重大偏差,否则就需要引起重视,除非浓度接近NAAQS限值。

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