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哥本哈根地区土地利用与网络对自行车与机动车碰撞事故频率和严重程度影响的空间分析

A Spatial Analysis of Land Use and Network Effects on Frequency and Severity of Cyclist-Motorist Crashes in the Copenhagen Region.

作者信息

Kaplan Sigal, Giacomo Prato Carlo

机构信息

a Technical University of Denmark , Department of Transport , Lyngby , Denmark.

出版信息

Traffic Inj Prev. 2015;16(7):724-31. doi: 10.1080/15389588.2014.1003818. Epub 2015 Feb 9.

Abstract

OBJECTIVE

Urban and transport planners worldwide have recently designed and implemented policies for increasing the number of cyclists. Although cycling is on the rise even in car-oriented cities and regions, the fear of being involved in a crash is still the main obstacle to further increases in cycling market shares. The current study proposes the first joint model of frequency and severity of cyclist-motorist collisions with the aim of unraveling the factors contributing to both the probability of being involved in a crash and, conditional on the crash occurrence, experiencing a severe injury outcome.

METHOD

A multivariate Poisson-lognormal model with correlated autoregressive priors was estimated on a sample of 5,349 cyclist-motorist crashes that occurred in the Copenhagen region between 2009 and 2013. The model considered the links of the road network in the region as the unit of observation, controlled for traffic exposure of nonmotorized and motorized transport modes, evaluated the effect of infrastructure and land use, and accounted for heterogeneity and spatial correlation across links.

RESULTS

Results confirmed the existence of the phenomenon of safety in numbers and added to the narrative by emphasizing that the most severe crashes are the ones most benefiting from an increase in the number of cyclists. In addition, results argued that the construction of Copenhagen-style bicycle paths would significantly contribute to increasing safety, especially in suburban areas where the speed differential between cyclists and motorists is greater. Last, results illustrated a need for thinking about cycling safety in intersection design and reflecting on the importance of spatial and aspatial correlation both within and between injury categories.

CONCLUSIONS

The findings from this study illustrated how encouraging cycling would increase safety in relation to the phenomenon of safety in numbers and how, in turn, increasing safety would convince more people to cycle. In addition, they suggested how the design of bicycle infrastructure should not only consider bicycle lanes but in particular focus on bicycle paths where the number of conflicts and the stress for sharing the road are highly reduced and how thinking about road design should extend to the general level and include a discourse about safer intersections. Last, attention should be given to the road design in the city center and to traffic management, because clearly safer traffic implies more cyclists and, in turn, more cyclists imply fewer cars and less congestion.

摘要

目的

全球城市和交通规划者最近设计并实施了增加骑自行车人数的政策。尽管即使在以汽车为主的城市和地区,骑自行车的人数也在上升,但对遭遇碰撞的恐惧仍是自行车市场份额进一步增长的主要障碍。当前研究提出了首个自行车与机动车碰撞频率和严重程度的联合模型,旨在揭示导致卷入碰撞事故概率以及在碰撞事故发生条件下导致重伤结果的因素。

方法

在2009年至2013年哥本哈根地区发生的5349起自行车与机动车碰撞事故样本上,估计了一个具有相关自回归先验的多元泊松 - 对数正态模型。该模型将该地区道路网络的路段作为观察单位,控制非机动车和机动车交通方式的交通暴露情况,评估基础设施和土地利用的影响,并考虑路段间的异质性和空间相关性。

结果

结果证实了“人数安全”现象的存在,并通过强调最严重的碰撞事故最能从骑自行车人数的增加中受益,丰富了相关论述。此外,结果表明,建设哥本哈根式自行车道将显著有助于提高安全性,尤其是在自行车与机动车速度差异较大的郊区。最后,结果表明在交叉路口设计中需要考虑自行车安全,并反思伤害类别内部和之间空间和非空间相关性的重要性。

结论

本研究结果说明了鼓励骑自行车如何相对于“人数安全”现象提高安全性,以及反过来,提高安全性如何能说服更多人骑自行车。此外,研究结果还表明自行车基础设施设计不仅应考虑自行车道,尤其应关注冲突数量和道路共享压力大幅降低的自行车道,以及道路设计思考应如何扩展到总体层面并包括关于更安全交叉路口的讨论。最后,应关注市中心的道路设计和交通管理,因为显然更安全的交通意味着更多骑自行车的人,反过来,更多骑自行车的人意味着更少的汽车和更少的拥堵。

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