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Performance-based design of bridge piers under vehicle collision

机译:车辆碰撞下基于性能的桥墩设计

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This paper introduces a novel damage ratio index (DRI) that can be used to define the expected damage due to impact scenarios of vehicles striking bridge piers. The DM is based on the structural characteristics of the bridge and the kinetic energy of the colliding vehicle. A performance-based approach allows the designer or bridge owner to choose a target performance level based on different parameters, such as the criticality of the bridge to the transportation network or economic constraints. Detailed finite element models of the bridge piers were generated, validated, and verified against a series of available experimental and numerical results from previous research. A detailed review of the effects of different design parameters, including the pier diameter and transverse reinforcement ratio, were considered in the response of the bridge piers to collisions. For this purpose, the internal shear forces, bending moments, and displacements under different collision scenarios were studied. The review showed that the pier diameter governs the overall failure mode, the transverse reinforcement ratio controls the amount of localized damage experienced by the pier, and the kinetic energy of the impacting vehicle governs the magnitude of internal forces generated within the pier. This proposed performance-based design approach is based on the novel DRI, which enables straightforward designs of circular reinforced concrete bridge piers for a vehicle collision event without the use of extensive finite element modeling.
机译:本文介绍了一种新颖的破损率指数(DRI),该指数可用于定义由于车辆撞击桥墩的撞击场景而引起的预期破损。 DM基于桥梁的结构特征和碰撞车辆的动能。基于性能的方法允许设计人员或桥梁所有者根据不同的参数(例如,桥梁对运输网络的关键性或经济限制)选择目标性能水平。生成,验证和验证了桥墩的详细有限元模型,并根据一系列先前研究得出的实验和数值结果进行了验证。考虑了桥墩对碰撞的响应,对包括桥墩直径和横向配筋率在内的不同设计参数的影响进行了详细回顾。为此,研究了在不同碰撞情况下的内部剪切力,弯矩和位移。审查表明,墩的直径决定了整体的破坏模式,横向加强比控制了墩受到的局部破坏的程度,而撞击车辆的动能决定了墩内产生的内力的大小。这项基于性能的建议设计方法基于新颖的DRI,可在不使用广泛的有限元建模的情况下针对车辆碰撞事件进行圆形钢筋混凝土桥墩的直接设计。

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