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Nonlinear model updating of a reinforced concrete pedestrian cable‐stayed bridge

机译:钢筋混凝土行人斜拉桥的非线性模型更新

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摘要

Strong earthquakes often cause different levels of damage to reinforced concrete (RC) bridges. The identification of their damage state and the prediction of their future seismic performance are thus necessary for hazard rescue and damage retrofit. To achieve this objective, the nonlinear model and the nonlinear model updating of the bridges are needed. This paper presents a fiber frame element-based nonlinear model and a new nonlinear model updating method for a RC pedestrian cable-stayed bridge. The fiber frame element-based nonlinear model is established in OpenSees, accounting for both material and geometric nonlinearities. The evolution principles of envelop curves, together with hysteretic rules with respect to reloading and unloading paths for both concrete and reinforcement materials, are considered. The new nonlinear model updating method is developed in the time domain, utilizing both global and local structural responses. The new updating method can evaluate not only time-dependent strength degradation but also time-dependent stiffness deterioration so that the current damage state of the bridge can be identified and the future seismic performance and damage state can be predicted. Finally, shake table tests were carried out on the 1:12 scaled RC pedestrian cable-stayed bridge, and the comparison of the predicted global and local seismic responses of the bridge with the measured ones confirms the accuracy and effectiveness of the proposed nonlinear modelling and model updating methods.
机译:强烈的地震通常会对钢筋混凝土(RC)桥梁造成不同程度的破坏。因此,对于危险救援和损坏改造,必须确定其损坏状态并预测其未来的抗震性能。为了实现该目标,需要桥梁的非线性模型和非线性模型更新。本文提出了一种基于纤维框架单元的非线性模型,以及一种新的RC斜拉桥非线性模型更新方法。在OpenSees中建立了基于纤维框架元素的非线性模型,考虑了材料和几何非线性。考虑了包络曲线的演变原理,以及关于混凝土和钢筋材料的装卸路径的滞后规则。利用全局和局部结构响应,在时域中开发了新的非线性模型更新方法。新的更新方法不仅可以评估随时间变化的强度退化,还可以评估随时间变化的刚度退化,从而可以识别桥梁的当前损坏状态,并可以预测未来的地震性能和损坏状态。最后,在比例为1:12的RC步行式斜拉桥上进行了振动台测试,将桥梁的预计整体地震响应和局部地震响应与实测地震响应进行比较,验证了所提出的非线性建模的准确性和有效性。模型更新方法。

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