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Experimental and numerical studies on seismic performance of hollow RC bridge columns

机译:空心RC桥柱抗震性能的试验与数值研究

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摘要

To investigate the seismic performance and to obtain quantitative parameters for the requirement of performance-based bridge seismic design approach, 12 reinforced concrete (RC) hollow rectangular bridge column specimens were tested under constant axial load and cyclic bending. Parametric study is carried out on axial load ratio, aspect ratio, longitudinal reinforcement ratio and transverse reinforcement ratio. The damage states of these column specimens were related to engineering limit states to determine the quantitative criteria of performance-based bridge seismic design. The hysteretic behavior of bridge column specimens was simulated based on the fiber model in OpenSees program and the results of the force-displacement hysteretic curves were well agreed with the experimental results. The damage states of residual cracking, cover spalling, and core crushing could be well related to engineering limit states, such as longitudinal tensile strains of reinforcement or compressive strains of concrete, etc. using cumulative probability curves. The ductility coefficient varying from 3.71 to 8.29, and the equivalent viscous damping ratio varying from 0.19 to 0.31 could meet the requirements of seismic design.
机译:为了研究抗震性能并获得基于性能的桥梁抗震设计方法要求的定量参数,在恒定轴向载荷和循环弯曲下对12个钢筋混凝土空心矩形桥柱标本进行了测试。对轴向载荷比,纵横比,纵向配筋率和横向配筋率进行了参数研究。这些柱试样的损伤状态与工程极限状态相关,以确定基于性能的桥梁抗震设计的定量标准。在OpenSees程序中基于纤维模型模拟了桥梁柱标本的滞后行为,力-位移滞后曲线的结果与实验结果非常吻合。使用累积概率曲线,残余开裂,覆盖剥落和岩心破碎的破坏状态可能与工程极限状态密切相关,例如钢筋的纵向拉伸应变或混凝土的压缩应变等。延性系数在3.71到8.29之间变化,等效粘性阻尼比在0.19到0.31之间可以满足抗震设计的要求。

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