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Finite Element Study of Post-crash Kinematics and Injury Mechanisms of Bus-Pedestrian Collisions

机译:公交行人碰撞后碰撞运动学和伤害机制的有限元研究

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Road traffic accidents are major cause of fatalities and losing property. In many big cities, many common fatal accidents are involved buses and pedestrians. In order to increase safety for pedestrians, it is necessary to understand pedestrian-vehicle collisions and injury mechanisms. Injury characteristics and mechanisms depend on post-crash kinematics. It is obvious that post-crash kinematics resulting from passenger carpedestrian crash is much different from bus-pedestrian crash. Bus-pedestrian collision study can be done through costly full scale crash tests. An alternative approach to these actual tests is finite element simulations which have been widely employed for vehicle components design and optimisation. This paper has addressed the development of bus-to-pedestrian collision finite element model. The model has been used to study influences of impact speed and impact angle on post-crash kinematics and injury mechanisms of a pedestrian. Relations between the injury risk, the impact speeds and the impact angles have been discussed. The analysis information will assist better design of the bus front structure.
机译:道路交通事故是死亡和失去财产的主要原因。在许多大城市中,许多常见的致命事故都是公共汽车和行人。为了提高行人的安全性,有必要了解行人 - 车辆碰撞和伤害机制。伤害特征和机制取决于崩溃后的运动学。显而易见的是,乘客小屋崩溃导致的崩溃后的运动学与公交车行星崩溃有很大不同。公共汽车行人碰撞研究可以通过昂贵的全尺度碰撞测试来完成。这些实际测试的替代方法是有限的元件模拟,已被广泛用于车辆部件设计和优化。本文涉及公交车辆到行人碰撞有限元模型的开发。该模型已被用于研究冲击速度和冲击角对行人后碰撞后运动学和伤害机制的影响。讨论了伤害风险,冲击速度和冲击角之间的关系。分析信息将有助于更好地设计总线前部结构。

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