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Effect of pavement maintenance cycle on the fatigue reliability of simply-supported steel I-girder bridges under dynamic vehicle loading

机译:路面维护周期对动态车辆装载下简单支撑钢I梁桥疲劳可靠性的影响

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In this study, the effect of the pavement maintenance cycle on the fatigue reliability of simply-supported steel I-girder bridges under dynamic vehicle loading is studied. The bridge model and the fatigue load model are both adopted from the Load and Resistance Factor Design (LRFD) Bridge Design Specifications of the American Association of State Highways and Transportation Officials (AASHTO). A three-dimensional vehicle-bridge coupled model is developed to simulate the vehicle-bridge interaction and used to obtain the stress ranges of the steel bridge girders under the dynamic vehicle loading. Numerical simulations are carried out to study the influence of three important parameters, including the road surface condition, bridge span length and vehicle speed, on the fatigue damage induced by the fatigue truck. The results from this study show that the bridge fatigue reliability decreases dramatically under repeated dynamic vehicle loads when the road surface condition is very poor and that the pavement maintenance cycle has a significant influence on the bridge fatigue reliability. A procedure for determining the desired pavement maintenance cycle to achieve the target fatigue reliability of steel bridge girders is developed. An example is also provided for demonstrating the proposed procedure. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,研究了路面维护周期对动态车载负载下简单负载钢I梁桥的疲劳可靠性的影响。桥梁模型和疲劳负荷模型均采用了美国国家公路和交通官员协会(AASHTO)的载荷和电阻系数设计(LRFD)桥梁设计规范。开发了一种三维车桥耦合模型以模拟车桥相互作用,并用于在动态车载负载下获得钢桥梁梁的应力范围。进行了数值模拟,以研究三个重要参数的影响,包括道路表面状况,桥梁长度和车速,疲劳卡车诱导的疲劳损伤。本研究结果表明,当路面条件非常差时,桥梁疲劳可靠性在重复动态的车辆负荷下显着降低,并且路面维护周期对桥梁疲劳可靠性具有显着影响。开发了一种确定所需路面维护周期以实现钢桥梁梁的目标疲劳可靠性的过程。还提供了一个例子以证明所提出的程序。 (c)2016 Elsevier有限公司保留所有权利。

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