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Heavy Truck Collision with Bridge Piers: Computational Simulation Study

机译:与桥墩的重型卡车碰撞:计算仿真研究

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摘要

The vast majority of research studies on vehicular collision with bridge piers have been carried out with single-unit trucks, which are typically classified as medium-duty vehicles weighing about 90kN (20,000lb). Yet, collision events that involve severe bridge damage are generally caused by heavy-duty trucks, generally tractor-semitrailers weighing 360kN (80,000lb). The handful of tests that were conducted to study heavy truck collisions used rigid piers, which means that the energy absorption potential of the piers, and their failure mechanisms, were neglected. In this study, validated, high-fidelity finite-element simulations of collisions between heavy-duty tractor-semitrailers and reinforced concrete bridge piers have been carried out to investigate the demands imposed upon, and the damage modes of, concrete piers. Trucks with three different weights and piers with six different configurations were used in the simulations. The approach speeds for the trucks ranged from 48 to 113 km/h. The simulation results showed that impact from the engine block usually delivered the highest peak force, which was closely associated with the impact velocity of the vehicle. Once the pier's resistance has been compromised by this event, the subsequent trailer impact, which has a lower force demand but longer duration, causes further significant damage or even destroys the pier. The current provisions regarding vehicular impact demands in AASHTO requirements are critiqued based on the results of parametric simulations using the heavy truck model.
机译:通过单单元卡车进行了与桥墩车辆碰撞的绝大多数研究研究,单位卡车通常被归类为重约90kN(20,000LB)的中型车辆。然而,涉及严重桥梁损坏的碰撞事件通常由重型卡车引起的,一般是重型360kn(80,000LB)的拖拉机 - 半拖车。若要研究重型卡车碰撞的少数测试使用刚性墩,这意味着胶合的能量吸收电位及其失效机制被忽略了。在本研究中,已经进行了验证,高保真有限元模拟重型拖拉机 - 半拖射仪和钢筋混凝土桥墩之间的碰撞,以研究施加的需求,以及混凝土墩的损伤模式。在模拟中使用了具有三种不同的重量和遍布六种不同配置的卡车。卡车的速度范围为48至113 km / h。仿真结果表明,来自发动机块的冲击通常递送了最高峰值力,其与车辆的冲击速度密切相关。一旦码头的阻力受到这种事件的损害,随后的拖车撞击就会较低,持续时间较长,导致进一步显着损坏甚至摧毁码头。关于AASHTO要求在AASHTO要求中的车辆影响要求的当前规定基于使用重型卡车模型的参数模拟的结果批评。

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  • 来源
    《Journal of bridge engineering》 |2019年第6期|04019052.1-04019052.12|共12页
  • 作者单位

    CUNY City Coll Dept Civil & Environm Engn New York NY 10031 USA;

    CUNY City Coll Dept Civil & Environm Engn New York NY 10031 USA;

    Univ Michigan Dept Civil & Environm Engn Ann Arbor MI 48109 USA;

    CUNY City Coll Dept Civil & Environm Engn New York NY 10031 USA;

    Fed Highway Adm Baltimore MD 21201 USA;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 21:38:51

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