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Experimental and numerical investigation on deflection and behavior of portable construction barrier subjected to vehicle impacts

机译:车辆撞击便携式施工屏障偏转和行为的实验和数值研究

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Experimental and numerical investigations were conducted on impact performance and deflection of precast, portable concrete construction barrier, referred to as a portable concrete barrier (PCB), with a free-standing and a box-beam stiffened configuration. A 61-m long PCB system, consisting of ten 6.1-m long PCBs, was initially evaluated with two full-scale crash tests in a free-standing configuration and a box-beam stiffened configuration according to safety performance guidelines in Manual for Assessing Safety Hardware (MASH) 2016 for Test Level 3 (TL-3). Finite element models were developed using LS-DYNA and validated with these crash tests to ensure their feasibility to estimate barrier deflections and evaluate safety performance. The validated numerical models were used to conduct numerical simulations and investigate effects of concrete constitutive models and barrier length on the performance of PCB system with a box?beam stiffened configuration. Numerical results provided information on the selection and use of concrete constitutive models for evaluation of reinforced concrete barrier impact performance. Furthermore, the reduced-length analysis demonstrated that a reduction in the total system length resulted in decreased dynamic barrier deflection during impact events, as the ends of each system were pinned. This reduced-length analysis provided useful guideline on PCB system design and application for traffic control plan.
机译:实验和数值调查是对冲击性能和预制,便携式混凝土施工屏障的偏转进行的,被称为便携水泥墩(PCB),具有一个独立的和一个箱形梁加固结构。 A 61米长的PCB系统,由10 6.1米长的多氯联苯,最初与两个全规模碰撞测试评估了一个独立的配置和箱形梁根据用于评估安全手动安全性能准则硬化配置硬件(MASH)2016测试3级(TL-3)。有限元模型,采用LS-DYNA开发,并与这些碰撞试验验证,以确保其可行性,估计屏障变形和评价的安全性能。经验证的数值模型被用来进行数值模拟和调查混凝土构模型和在PCB上系统的一个盒子的性能障碍长度的影响?束硬化配置。数值结果提供了选择和使用混凝土本构模型的钢筋混凝土壁障碰撞性能的评价信息。此外,减小的长度的分析表明,在总的系统长度的减小导致在冲击事件期间,降低动态屏障偏转如每个系统的末端被钉扎。这种减小的长度的分析设置在PCB系统设计和应用进行流量控制计划有用的指导。

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