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Non-collision Injuries In Urban Buses-strategies For Prevention

机译:城市公交车的非撞伤预防策略

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Public transport is a potentially important part of independent living for older people, but they are over-represented in non-collision bus injuries. This paper reports on a computational modelling approach to addressing this problem: the Madymo human model validated for simulating passive, seated vehicle occupants was adapted to simulate a standing passenger in an accelerating bus. The force/deformation characteristics of the bus were measured and the human model was expanded to include a validated active hand grip. Real world urban bus acceleration profiles were measured and used as inputs for the simulations. Balance loss could not be predicted, but injuries from contact with the vehicle floor following a fall were evaluated. Results show that peak bus accelerations measured (±0.32 g) exceed reported acceleration thresholds for balance loss for a standing passenger using a handgrip (0.15 g). The maximum predicted probability of knee and head injuries arising from impact with bus seats, handrails and walls were 53% and 35%, respectively. The stairwell and horizontal seatback handles were particularly hazardous and the latter should be replaced with vertical handrails. Driver training should be expanded to include video training based on multibody simulations to highlight the risks for standing passengers induced by harsh braking and acceleration.
机译:公共交通是老年人独立生活的潜在重要组成部分,但在非撞车事故中,残疾人的人数过多。本文报告了一种用于解决此问题的计算建模方法:经过验证的用于模拟被动坐着的汽车乘员的Madymo人体模型适用于模拟加速公交车中的站立乘客。测量了公共汽车的力/变形特性,并扩展了人体模型,以包括经过验证的主动手柄。测量了现实世界中的城市公交车加速度曲线,并将其用作模拟的输入。无法预测平衡损失,但评估了跌倒后与车辆地板接触造成的伤害。结果表明,测得的峰值巴士加速度(±0.32 g)超过了报告的针对使用手柄的站立乘客的平衡损失的加速度阈值(0.15 g)。因公交车座椅,扶手和墙壁撞击而导致膝盖和头部受伤的最大预测概率分别为53%和35%。楼梯间和水平椅背把手特别危险,应将其替换为垂直扶手。驾驶员培训应扩展到包括基于多体仿真的视频培训,以突出由于急刹车和加速而引起站立乘客的风险。

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