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Modeling Impacts of Highway Circular Curve Elements on Heavy-Duty Diesel Trucks’ CO2 Emissions

机译:高速公路圆弧元素对重型柴油卡车二氧化碳排放的影响建模

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摘要

Heavy-duty trucks contribute a significant component of all transportation in cargo terminals, such as Shaanxi Province, China. The emissions from these vehicles are the primary source of carbon emissions during highway operations. While several studies have attempted to address emission issues by improving traffic operations, a few focused on the relationship between emissions and highway geometric design, especially for heavy-duty trucks. The primary goal of this research was to understand the impact of circular curve on carbon dioxide (CO2) emissions produced by heavy-duty diesel trucks. Firstly, appropriate parameters were specified in MOVES (motor vehicle emission simulator) model according to the geometrical characteristics. Fuel consumption, speed and location data were collected by hiring five skilled drivers on the automotive proving ground located at Chang’an University, Shaanxi Province. The associated carbon emission data were derived from fuel consumption data by applying the IPCC (Intergovernmental Panel on Climate Change) method. After this, the applicability of MOVES model was verified by the field experiment. Moreover, a multiple regression model for CO2 emissions incorporated with roadway segment radius, circular curve length, and initial vehicle speed was established with data generated by the MOVES model. The proposed CO2 emission model was also verified by field experiment with relative error of 6.17%. It was found that CO2 emission had monotone decreasing property with radius increasing, and the minimum radius that influenced diesel CO2 emission was 550 m. The proposed quantitative CO2 emission model can provide a reference for low-carbon highway design, leading to environment-friendly transportation construction.
机译:重型卡车在诸如中国陕西省等货运码头的所有运输中占重要部分。这些车辆的排放是高速公路运营期间碳排放的主要来源。尽管有几项研究试图通过改善交通运营来解决排放问题,但有些研究集中在排放与公路几何设计之间的关系上,特别是对于重型卡车。这项研究的主要目的是了解圆形曲线对重型柴油卡车产生的二氧化碳(CO2)排放的影响。首先,根据几何特征在MOVES(机动车排放模拟器)模型中指定了适当的参数。通过在陕西省长安大学的汽车试验场聘用五名熟练的驾驶员来收集油耗,速度和位置数据。相关的碳排放数据是通过使用IPCC(政府间气候变化专门委员会)方法从燃料消耗数据中得出的。此后,通过野外实验验证了MOVES模型的适用性。此外,利用由MOVES模型生成的数据,建立了包含道路段半径,圆弧长度和初始车速的二氧化碳排放量的多元回归模型。通过野外实验验证了所提出的CO2排放模型,相对误差为6.17%。研究发现,随着半径的增大,CO2排放具有单调递减的特性,影响柴油CO2排放的最小半径为550 m。所提出的量化的二氧化碳排放模型可为低碳公路设计提供参考,从而实现环境友好的交通建设。

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