首页> 外文会议>Proceedings of the ASME Rail Transportation Division fall conference 2009 >COLLISION SAFETY IMPROVEMENTS FOR LIGHT RAIL VEHICLES OPERATING IN SHARED RIGHT OF WAY STREET ENVIRONMENTS
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COLLISION SAFETY IMPROVEMENTS FOR LIGHT RAIL VEHICLES OPERATING IN SHARED RIGHT OF WAY STREET ENVIRONMENTS

机译:共享通行道路环境中操作的轻轨车辆的碰撞安全改进

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摘要

The majority of fatalities that occur from light rail vehicle (LRV) operations are occupants of automobiles that are struck by the LRVs. Recent developments of crashworthiness standards for LRVs by the American Society of Mechanical Engineers (ASME) Rail Transit Vehicle Standards Committee included consideration of a wide variety of crash scenarios including collisions between LRVs and street running automobiles. The requirements included in the standard are primarily to create an enclosed front end geometry where the struck vehicle will not be entrapped or overridden. A smooth enclosed front end profile is a primary requirement for improving the compatibility of LRVs colliding with automobiles.rnMore recently, a study has been initiated by the Federal Transit Administration (FTA) to develop LRV front end features that further improve the crash compatibility with automobiles. The approach depends on results from computer simulation modeling of vehicle collisions across a wide variety of LRV bumper designs, some with and some without energy absorbers. Results of the study and the design of the energy absorbing bumper system are presented.
机译:轻轨车辆(LRV)运营所造成的死亡多数是被LRV撞到的汽车的乘员。美国机械工程师协会(ASME)轨道交通车辆标准委员会对LRV的耐撞性标准的最新发展包括对各种碰撞情况的考虑,包括LRV与街头行车之间的碰撞。该标准中包含的要求主要是为了创建封闭的前端几何形状,在这种几何形状下,被碰撞的车辆不会被困住或被超越。光滑的封闭式前端轮廓是提高LRV与汽车碰撞的兼容性的主要要求。最近,联邦运输管理局(FTA)开展了一项研究,以开发LRV前端功能,从而进一步提高与汽车的碰撞兼容性。 。该方法取决于跨各种LRV保险杠设计的车辆碰撞计算机仿真模型的结果,其中一些带有或不带有能量吸收器。介绍了研究结果和能量吸收保险杠系统的设计。

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