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首页> 外文期刊>Advances in Engineering Software >Crash analysis and evaluation of vehicular impacts on W-beam guardrails placed behind curbs using finite element simulations
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Crash analysis and evaluation of vehicular impacts on W-beam guardrails placed behind curbs using finite element simulations

机译:使用有限元模拟对撞在路边后方W形护栏的车辆碰撞进行碰撞分析和评估

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摘要

Roadway design, including the use of traffic barriers, is a critical aspect in transportation safety and is used to reduce the severity and frequency of automotive accidents. All barriers used on U.S. highways are designed according to the American Association of State Highway and Transportation Officials (AASHTO) Roadside Design Guide and are tested to ensure they satisfy the safety criteria specified by Manual for Assessing Safety Hardware (MASH). While curbs main functions are to separate the road from roadside, control vehicle rights-of-way, and channel water runoff; their use is discouraged by AASHTO from being installed on high-speed roadways due to the disruptive behavior caused when vehicles strike them. The destructive nature of vehicular crashes imposes significant challenges to barrier design using full-scale physical testing; numerical simulations thus become a viable option to support guardrail design improvements and performance evaluation. In this study, validated vehicle and W-beam guardrail models installed behind AASHTO Type B curbs were used to perform full-scale simulations of vehicle-curb-guardrail impacts. Seven single-faced W-beam guardrails, with placement heights of 27, 29, and 31 inches (0.69, 0.74, and 0.79 m), placed behind curbs at zero, six, and twelve foot offsets were impacted at 44 mph (70 km/h) and two impact angles (25° and 15°) by a 1996 Dodge Neon and a 2006 Ford F250. The guardrail's performance was evaluated by analyzing the maximum guardrail deflection and vehicular responses based on post-impact exit trajectory utilizing the MASH exit box criterion, rotational angles, and transverse and longitudinal displacements and velocities.
机译:道路设计(包括使用交通障碍物)是运输安全中的关键方面,可用于减少汽车事故的严重性和发生频率。美国高速公路上使用的所有障碍物均根据美国国家公路和运输官员协会(AASHTO)的路边设计指南进行设计,并经过测试以确保其满足《安全硬件评估手册》(MASH)规定的安全标准。路缘石的主要功能是将道路与路边分开,控制车辆通行权,以及渠道水径流; AASHTO不建议将其用于高速道路,因为当汽车撞击它们时会造成破坏性行为。车辆碰撞的破坏性对使用全面物理测试的障碍设计提出了重大挑战。因此,数值模拟成为支持护栏设计改进和性能评估的可行选择。在这项研究中,安装在AASHTO B型路缘后方的经过验证的车辆和W型钢护栏模型用于对车辆路缘护栏碰撞进行全面模拟。七个放置在27、29和31英寸(0.69、0.74和0.79 m)高度的单面W形护栏,以零时,六时和十二英尺的偏移量放置在路缘后面,时速为44 mph(70 km) / h)和1996年道奇霓虹灯和2006年福特F250的两个碰撞角(25°和15°)。通过使用MASH出线箱标准,旋转角度以及横向和纵向位移和速度,基于撞击后出口轨迹分析最大护栏挠度​​和车辆响应,从而评估护栏的性能。

著录项

  • 来源
    《Advances in Engineering Software》 |2017年第12期|85-97|共13页
  • 作者单位

    Department of Mechanical Engineering and Engineering Science, The University of North Carolina at Charlotte, Charlotte, NC 28223, USA;

    Department of Mechanical Engineering and Engineering Science, The University of North Carolina at Charlotte, Charlotte, NC 28223, USA;

    Department of Mechanical Engineering and Engineering Science, The University of North Carolina at Charlotte, Charlotte, NC 28223, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    W-beam guardrail; Curb; Crash; Roadside barrier; Highway safety; Finite element;

    机译:W型钢护栏;抑制;崩溃;路边的障碍;公路安全;有限元;

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