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Analysis of developed transition road safety barrier systems

机译:分析已开发的过渡道路安全屏障系统

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摘要

Road safety barriers protect vehicles from roadside hazards by redirecting errant vehicles in a safe manner as well as providing high levels of safety during and after impact. This paper focused on transition safety barrier systems which were located at the point of attachment between a bridge and roadside barriers. The aim of this study was to provide an overview of the behavior of transition systems located at upstream bridge rail with different designs and performance levels. Design factors such as occupant risk and vehicle trajectory for different systems were collected and compared. To achieve this aim a comprehensive database was developed using previous studies. The comparison showed that Test 3-21, which is conducted by impacting a pickup truck with speed of 100 km/h and angle of 25 to transition system, was the most severe test. Occupant impact velocity and ridedown acceleration for heavy vehicles were lower than the amounts for passenger cars and pickup trucks, and in most cases higher occupant lateral impact ridedown acceleration was observed on vehicles subjected to higher levels of damage. The best transition system was selected to give optimum performance which reduced occupant risk factors using the similar crashes in accordance with Test 3-21. © 2013 Elsevier Ltd. All rights reserved.
机译:道路安全栅栏可以通过安全地重定向错误的车辆,并在碰撞期间和碰撞后提供高水平的安全性,从而保护车辆免受路边伤害。本文重点介绍过渡安全屏障系统,该系统位于桥梁和路边屏障之间的连接点。本研究的目的是概述位于上游桥轨的过渡系统的行为,这些过渡具有不同的设计和性能水平。收集并比较了不同系统的设计因素,例如乘员风险和车辆轨迹。为了达到这个目的,使用以前的研究开发了一个综合的数据库。比较表明,测试3-21是最严格的测试,该测试通过以100 km / h的速度和25度的过渡系统撞击皮卡车进行。重型车辆的乘员碰撞速度和行驶加速低于乘用车和皮卡车的行驶速度,在大多数情况下,损坏程度较高的车辆观察到乘员的横向碰撞行驶加速度较高。选择了最佳的过渡系统,以提供最佳性能,从而根据测试3-21使用类似的撞车事故,从而降低乘客风险因素。 ©2013 Elsevier Ltd.保留所有权利。

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