首页> 外文会议>International Conference on Structural Dynamics >Derailment mechanism of trains running over bridges during strong earthquakes
【24h】

Derailment mechanism of trains running over bridges during strong earthquakes

机译:在强大地震期间桥梁跑过的火车机制

获取原文

摘要

This paper examines the seismic safety of high-speed railway (HSR) trains running over bridges during strong earthquakes. It develops an original seismic vehicle-bridge interaction (SVBI) analysis scheme to investigate the response of both the vehicle system and the bridge system. The study models the train vehicles as three-dimensional (3D) multibody assemblies. All components of a vehicle are assumed rigid bodies connected with springs and dashpots, representing the vehicle suspension system. The 3D bridge is simulated using the finite element method (FEM). To determine the contact point and the direction of the contact forces it considers the practical nonlinear profiles of wheels and rails. The normal contact forces are derived from kinematic constraints as Lagrange multipliers. Detachment occurs when a normal contact force becomes zero. The study formulates the contact-detachment transition along the normal direction of contact as a linear complementarity problem (LCP) and assumes impact follows Newton's law. The calculation of the tangential creep forces due to the rolling contact is based on a nonlinear Shen-Hedrick-Euristic creep model. The proposed wheel-rail contact model can capture directly different contact phenomena, including flange contact, detachment, uplifting, climbing, derailment, and re-contact. The results underline the importance of a realistic analysis of the SVBI during seismic shaking. They show that seismic induced vibration of the bridge reduces both the comfort and the safety of the vehicles travelling over the bridge, compared to same vehicles travelling on the ground. For most examined cases with different wheelsets, the detachment of a wheel happens when the other wheel belonging to the same wheelset is in flange contact. The derailment of the wheel takes place when the wheel rolls over the rail head.
机译:本文探讨了强大地震期间桥梁跑过的高速铁路(HSR)火车的地震安全性。它开发出原始地震车桥相互作用(SVBI)分析方案,以研究车辆系统和桥系统的响应。该研究模拟火车车辆作为三维(3D)多体组件。现有车辆的所有部件都是假设与弹簧和划线波连接的刚性体,代表车辆悬架系统。使用有限元方法(FEM)模拟3D桥。为了确定接触力的接触点和方向,它考虑了车轮和轨道的实用非线性轮廓。正常接触力源自运动约束作为拉格朗日乘法器。当正常接触力变为零时发生脱离。该研究制定了沿着正常接触方向作为线性互补问题(LCP)的接触拆卸转变,并假设影响遵循牛顿的法律。由于滚动触点引起的切向蠕变力的计算基于非线性沉鼠鼠欧洲蠕变模型。所提出的轮轨接触型号可以直接捕获不同的接触现象,包括法兰接触,分离,令人振奋,攀爬,脱轨和重新接触。结果强调了地震震动期间SVBI实际分析的重要性。他们表明,与地面上行驶的相同车辆相比,桥梁的抗震诱导的振动减少了桥梁的舒适和安全的安全性。对于具有不同轮廓的大多数检查案例,当属于相同的轮子的其他车轮处于法兰接触时,将发生车轮的分离。当轮子滚过轨道头时,车轮的脱轨发生。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号