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Safety analysis of a road vehicle passing by a bridge tower under crosswinds

机译:侧风下过桥塔的公路车辆安全性分析

摘要

As a road vehicle passes by a bridge tower under crosswinds, the vehicle will be briefly shielded from the crosswinds by the tower within a very short period of time, but when it gets out of the tower it enters a sharp-edged crosswind gust with the obvious danger of overturning or course deviation. The accident vehicle/wind speed associated with such an event is currently estimated by applying a 0.5 s sudden step crosswind gust to the vehicle to see if overturning, sideslip or rotation accident will occur. In reality, a much more complicated wind condition than a sudden crosswind gust is confronted by the vehicle when it passes by a bridge tower. This study aims at a more accurate safety analysis of a road vehicle passing by a bridge tower under crosswinds. Varying wind loads experienced by a road vehicle passing by a bridge tower are first formulized in terms of time-varying aerodynamic coefficients obtained from computational fluids dynamics. Varying wind loads are then enforced on the vehicle together with a coupled road vehicle-bridge-wind (RVBW) system. Safety analysis is finally performed to examine the behavior and safety of the vehicle. The results show that the rolling and lateral motions of the vehicle are influenced significantly by the tower and that the driver needs to take quick action with a high steer angle to keep the right course. The influence of the bridge dynamic response on the safety of a single vehicle passing by the tower under crosswinds is insignificant.
机译:当公路车辆在侧风作用下经过桥塔时,车辆会在很短的时间内短暂地被塔架挡住侧风,但是当车辆离开塔架时,它会进入带有尖锐边缘的侧风阵明显的倾覆或路线偏离的危险。当前,与此类事件相关的事故车辆/风速是通过对车辆施加0.5 s的突然阶跃侧风阵风来估计是否会发生倾覆,侧滑或旋转事故,从而进行估算的。实际上,车辆经过桥塔时,面对的风况要比突然的侧风阵风复杂得多。这项研究的目的是对侧风下经过桥塔的道路车辆进行更准确的安全性分析。首先,根据从计算流体动力学获得的随时间变化的空气动力学系数,可以确定公路车辆经过桥塔时遇到的各种风荷载。然后,将各种风载荷与公路车桥风(RVBW)耦合系统一起施加到车辆上。最后进行安全分析,以检查车辆的行为和安全性。结果表明,塔架对车辆的侧倾和侧向运动影响很大,驾驶员需要采取大转向角快速动作以保持正确的行驶路线。在侧风下,桥梁动力响应对通过塔架的单个车辆的安全性的影响微不足道。

著录项

  • 作者

    Wang B; Xu YL;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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