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Seismic performance and design of bridge piers with rocking isolation

机译:隔震桥墩的抗震性能与设计。

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Seismic isolation technology has a wide application to protect bridges from earthquake damage, a new designed bridge pier with seismic isolation are provided for railways in seismic regions of China. The pier with rocking isolation is a self-centering system under small and moderate earthquakes, and the unbonded prestressed tendons are used to prevent overturning under strong earthquakes. A numerical model based on pseudo-static testing results is presented to evaluate the seismic performance of isolation bridge piers, and is validated by the shaking table test. It is found that the rocking response and the loss of prestressing for the bridge pier increase with the increase of earthquake intensity. Besides, the intensity and spectral characteristics of input ground motion have great influence on displacement of the top and bottom of the bridge pier, while have less influence on the bending moment of the pier bottom. Experimental and numerical results show that the rocking-isolated piers presented in this study have good seismic performance, and it provides an alternative way for the railway bridge in the regions with high occurrence of earthquakes. Therefore, we provide the detailed procedures for seismic design of the rocking-isolated bridge pier, and a case study of the seismic isolation design with rocking piers is carried out to popularize the seismic isolation methods.
机译:隔震技术在保护桥梁不受地震破坏方面具有广泛的应用,为中国地震地区的铁路提供了一种新型设计的具有隔震功能的桥墩。具有摇摆隔离的墩是中小地震时的自定心系统,未粘结的预应力筋用于防止强地震下的倾覆。提出了基于拟静力试验结果的数值模型,用于评价隔震桥墩的抗震性能,并通过振动台试验进行了验证。研究发现,随着地震烈度的增加,桥墩的摇摆响应和预应力损失增大。此外,输入地震动的强度和频谱特性对桥墩顶部和底部的位移影响很大,而对桥墩弯曲力矩的影响较小。实验和数值结果表明,本研究提出的隔震墩具有良好的抗震性能,为地震多发地区的铁路桥梁提供了另一种选择。因此,我们为隔震桥梁桥墩的抗震设计提供了详细的程序,并以隔震桥墩的隔震设计为例,以推广隔震方法。

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