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An Investigation of Dynamic Responses and Head Injuries of Standing Subway Passengers during Collisions

机译:站立时地铁乘客碰撞过程中动力响应和头部伤害的调查

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摘要

With the development of the subway and the pressing demand of environmentally friendly transportation, more and more people travel by subway. In recent decades, the issues about passenger passive safety on the train have received extensive attention. In this research, the head injury of a standing passenger in the subway is investigated. Three MADYMO models of the different standing passenger postures, defined as baseline scenarios, are numerically set up. HIC15 values of passengers with different postures are gained by systematic parametric studies. The injury numerical simulation results of various scenarios with different friction coefficients, collision acceleration, standing angle, horizontal handrail height, and ring handrail height are analyzed. Results show that the horizontal handrail provides better protection in the three different standing passenger postures. Different friction coefficients and the standing angle have great impact on the head injuries of passengers in three different scenarios. The handrail height also has some effects on head injury of passengers with different standing postures, so it is necessary to be considered when designing the interior layout of the subway. This study may provide guidance for the safety design of the subway and some advices for standing subway passengers.
机译:随着地铁的发展以及对环保交通的迫切需求,越来越多的人乘坐地铁旅行。在最近的几十年中,关于火车上的乘客被动安全性的问题受到了广泛的关注。在这项研究中,研究了在地铁中站着乘客的头部受伤。数字化地建立了三种不同的站立乘客姿势的MADYMO模型(定义为基准情景)。通过系统的参数研究获得不同姿势的乘客的HIC15值。分析了不同摩擦系数,碰撞加速度,站立角度,水平扶手高度和环形扶手高度的各种情况下的损伤数值模拟结果。结果表明,水平扶手在三种不同的站立乘客姿势下提供了更好的保护。在三种不同的情况下,不同的摩擦系数和站立角度对乘客的头部伤害有很大影响。扶手的高度也会对站立姿势不同的乘客的头部受伤产生一定的影响,因此在设计地铁的内部布局时必须加以考虑。这项研究可以为地铁的安全设计提供指导,并为站着的地铁乘客提供一些建议。

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