基于车人碰撞事故重建的行人头部动力学响应
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国家自然科学基金资助项目(31170908,31200709), 重庆市自然科学基金资助项目(CSTC,2011jjA10022), 汽车噪声振动和安全技术国家重点实验室开放基金资助项目(NVHSKL-2010001)


Head dynamic response based on reconstruction of vehicle-pedestrian accidents with the video
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    摘要:

    目的 研究行人交通事故中,不同碰撞速度、不同车型及行人不同受撞击部位与行人头部损伤严重度的关系。方法 通过MADYMO多刚体动力学软件对一起有视频的行人交通事故进行事故重建,获得初始和边界条件,然后通过获得的边界和初始条件进行不同车速(20、30、40、50、60 km/h)、不同车型(轿车、SUV型车、面包车)、行人不同受撞击部位(正面、侧面、背面)的模拟碰撞实验,对模拟碰撞实验中行人头部损伤情况进行分析,并利用两例真实行人交通事故对部分结果进行验证。结果 不仅车辆碰撞速度、车辆前置结构影响行人头部损伤严重度,行人受撞击部位也是影响行人头部损伤严重度的重要原因。在碰撞速度≤30 km/h时,行人与地面接触造成的损伤可能比与车辆造成的损伤严重;碰撞速度≥40 km/h时,行人头部损伤主要是与车辆接触所致。结论 利用监控录像能比较准确地开展行人交通事故重建,从而对行人动力学响应进行分析。在行人交通事故频发路段,对不同车型进行不同限速,能有效减小行人头部损伤的严重程度。

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    Objective To study the relationship between the severity of pedestrian head injury and the impact speeds, the vehicle types and the impact positions in pedestrian-vehicle accidents by computer simulation based on the real accident video. Methods A pedestrian-traffic accident with the video was reconstructed by the MADYMO multi-body dynamics software to obtain the initial and boundary conditions. Experimental impact simulations were conducted on different vehicles (car, SUV and minibus) and pedestrian impact positions (front, side and back structure) by different speeds (20, 30, 40, 50 and 60 km/h) to analyze head injuries, and the simulation results were validated by two real pedestrian-vehicle accidents. Results Not only the impact speed and the front structure influenced the pedestrian head injury severity, but also the impact position of pedestrian was an important factor. At the collision speed ≤30 km/h, the pedestrian head injury caused by the contact with the ground could be possibly more serious than the contact with the vehicle; while at the collision speed≥40 km/h, the pedestrian head injury was mainly caused by the contact with the vehicle. Conclusions The pedestrian traffic accident can be accurately reconstructed by using the real accident video to analyze the pedestrian head dynamic response. The severity of pedestrian head injuries can be effectively reduced by speed limitations on different types of vehicles at pedestrian traffic accident black-spots.

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冯成建,王富平,徐臣,樊伟,刘盛雄,尹志勇.基于车人碰撞事故重建的行人头部动力学响应[J].医用生物力学,2013,28(2):164-170

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  • 收稿日期:2012-11-29
  • 最后修改日期:2013-01-12
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