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Analysis of the influence of geometric design consistency on vehicle CO_2 emissions

机译:几何设计一致性对车辆CO_2排放的影响分析

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Highway vehicles driving on rural roads account for more than 50% of all CO2 emissions produced by the transportation sector in Europe. Although the policy measures to mitigate Greenhouse Gas emissions are increasing, these do not include policies aimed at reducing emissions by means of highway geometric design, which significantly influences drivers' speeds and accelerations and, consequently, plays a major role on fuel consumption and emissions.Therefore, the main objective of this research is to study the influence of the geometric design consistency on vehicle CO2 emissions. To do this, continuous speed data were collected on 47 homogeneous road segments by means of Global Positioning System devices. Vehicle CO2 emissions were estimated by applying the VT-micro model, whereas geometric design consistency was assessed considering different global consistency models.As a conclusion, vehicle CO2 emissions decreases as the consistency level of a homogeneous road segment increases. Specifically, a good consistency road segment has been found to present an emission rate 20-30% lower than a poor-consistent one. Therefore, the design of consistent roads allows, in addition to maximize road safety, to help to achieve more environmentally sustainable highways, reducing CO2 emission production.
机译:在农村公路上行驶的高速公路车辆占欧洲交通运输部门产生的所有二氧化碳排放量的50%以上。尽管减少温室气体排放的政策措施在增加,但这些措施不包括旨在通过高速公路几何设计减少排放的政策,这会极大地影响驾驶员的速度和加速度,因此在燃料消耗和排放方面起着重要作用。因此,本研究的主要目的是研究几何设计一致性对车辆CO2排放的影响。为此,通过全球定位系统设备在47条均匀道路段上收集了连续速度数据。通过使用VT-micro模型估算车辆的CO2排放量,同时考虑不同的全局一致性模型来评估几何设计的一致性。具体而言,发现一致性良好的路段的排放率比一致性较差的路段低20-30%。因此,一致的道路设计除了可以最大程度地提高道路安全性之外,还可以帮助实现更具环境可持续性的高速公路,从而减少二氧化碳排放量。

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