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Performance of Modern Highway Bridges in the 2016 Kaikoura Earthquake

机译:2016年凯库拉地震现代公路桥梁的表现

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摘要

The performance assessment of four highway bridges damaged in the 2016 Kaikoura Earthquake is presented and methods adopted to repair the damage are outlined. The oldest of the four bridges was designed in 1969-70 and the newest in 2004. Although earthquake design procedures have advanced over this period, the design earthquake loadings for all four bridges were based on acceleration response spectra and the bridges detailed to have ductile failure modes in pier columns with circular sections. Levels of damage in the plastic hinges were predicted by undertaking back-analysis using static and dynamic analyses based on the ground motions recorded at strong-motion recording stations located within 1.5-7 km of the bridge sites. The response displacement of one of the bridges was considerably greater than its damage control limit state displacement. This explained the severe damage observed in the plastic hinges of this bridge. Significant plastic straining occurred in the plastic hinge reinforcement on two of the other bridges and the remaining low-cycle fatigue capacity of the column reinforcement was estimated using non-linear time history analyses. Column strengthening was required on one of these bridges and repairs without strengthening were found to be satisfactory on the other bridge.
机译:提出了2016年kaikoura地震中损坏的四条公路桥梁的性能评估,并概述了修复损害的方法。这座四座桥梁中最古老的是1969 - 70年和最新的2004年。虽然地震设计程序在此期间前进,但所有四个桥梁的设计地震载荷都是基于加速响应光谱,并详细描述具有延性衰竭的桥梁码头列中的模式与圆形部分。通过基于在位于桥接位点1.5-7千米内的强运动记录站记录的地面运动,通过使用静态和动态分析来预测塑料铰链损伤水平。其中一个桥梁的响应位移显着大于其损伤控制极限状态位移。这解释了这座桥梁的塑料铰链中观察到的严重损害。塑性铰链加固上发生显着的塑料紧张,并使用非线性时间历史分析估算柱加强件的剩余低循环疲劳能力。在其中一座桥梁上需要柱强化,并且在不加强的情况下被发现在另一桥上令人满意。

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