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自行车“密度安全”效应的证据:基于主体建模结果的验证。

Evidence for the 'safety in density' effect for cyclists: validation of agent-based modelling results.

机构信息

University of Melbourne, Transport, Health and Urban Design Research Hub, Parkville, Victoria, Australia

Centre for Human Factors and Sociotechnical Systems, University of the Sunshine Coast, Sippy Downs, Queensland, Australia.

出版信息

Inj Prev. 2019 Oct;25(5):379-385. doi: 10.1136/injuryprev-2018-042763. Epub 2018 Oct 12.

Abstract

The safety in numbers (SiN) effect for cyclists is widely observed but remains poorly understood. Although most studies investigating the SiN phenomenon have focused on behavioural adaptation to 'numbers' of cyclists in the road network, previous work in simulated environments has suggested SiN may instead be driven by increases in local cyclist spatial density, which prevents drivers from attempting to move through groups of oncoming cyclists. This study therefore set out to validate the results of prior simulation studies in a real-world environment. Time-gap analysis of cyclists passing through an intersection was conducted using 5 hours of video observation of a single intersection in the city of Melbourne, Australia, where motorists were required to 'yield' to oncoming cyclists. Results demonstrated that potential collisions between motor vehicles and cyclists reduced with increasing cyclists per minute passing through the intersection. These results successfully validate those observed under simulated conditions, supporting evidence of a proposed causal mechanism related to safety in density rather than SiN, per se. Implications of these results for transportation planners, cyclists and transportation safety researchers are discussed, suggesting that increased cyclist safety could be achieved through directing cyclists towards focused, strategic corridors rather than dispersed across a network.

摘要

自行车的“数量安全”(SiN)效应已被广泛观察到,但仍未得到充分理解。尽管大多数研究SiN 现象的研究都集中在对道路网络中自行车“数量”的行为适应上,但之前在模拟环境中的研究表明,SiN 可能是由局部自行车空间密度的增加引起的,这会阻止驾驶员试图穿过迎面而来的自行车群体。因此,本研究旨在验证现实环境中之前模拟研究的结果。通过对澳大利亚墨尔本一个十字路口的 5 小时视频观察,对自行车通过路口的时间间隔进行了分析,在该路口,驾驶员需要“避让”迎面而来的自行车。结果表明,随着通过路口的自行车每分钟数量的增加,机动车与自行车之间的潜在碰撞减少了。这些结果成功地验证了在模拟条件下观察到的结果,支持了与密度安全相关的因果机制的证据,而不是 SiN 本身。这些结果对交通规划者、自行车手和交通安全研究人员具有启示意义,表明通过将自行车引导到集中、战略的走廊而不是分散在网络中,可以提高自行车的安全性。

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