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Design of a bridge bumper to protect bridge girders against collisions of overheight vehicles

机译:桥梁保险杠的设计可保护桥梁大梁免受超高车辆的碰撞

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摘要

Bridges with low clearance are vulnerable to collision with overheight vehicles. Collisions of overheight vehicles can cause fatalities and injuries to the drivers and passengers of the overheight vehicles, and damage to bridge girders. The repair of the damaged bridges can be costly and time consuming. This research investigates the feasibility of developing a bridge bumper that minimizes the physical injuries and the likelihood of fatalities and protects the structural elements of bridges by absorbing the impact energy. The thesis describes a small-scale impact experiment using the proposed bridge bumper with several options of energy absorbing materials to protect a reinforced concrete beam. A finite element analysis is done to simulate the small-scale impact experiments. Optimization of the finite element model is carried out for the response quantities of interest with respect to the geometrical parameters and the material properties of the proposed bridge bumper. Such analysis can guide the design of an optimal bridge bumper that maximizes the energy dissipation and minimizes the damage to the bridge girder and the likelihood of fatalities and injuries.
机译:低净距的桥梁很容易与超高车辆相撞。超重车辆的碰撞会导致超重车辆的驾驶员和乘客死亡和受伤,并损坏桥梁大梁。修复损坏的桥梁可能既昂贵又费时。这项研究调查了开发一种减震器的可行性,该减震器可最大程度地减少人身伤害和死亡的可能性,并通过吸收冲击能量来保护桥梁的结构元素。本文描述了一种使用所提出的桥梁保险杠的小规模冲击试验,该保险杠具有多种吸能材料来保护钢筋混凝土梁。进行了有限元分析以模拟小规模冲击实验。针对所涉及的桥梁保险杠的几何参数和材料特性,对感兴趣的响应量进行了有限元模型的优化。这样的分析可以指导最佳桥式保险杠的设计,该桥式保险杠可最大程度地降低能量消耗,并最大程度地减少对桥形梁的损坏以及致命和受伤的可能性。

著录项

  • 作者

    Sharma Hrishikesh;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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