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Effects of temperature and lead core heating on response of seismically isolated bridges under near-fault excitations

机译:温度和铅芯发热对近断层激励下隔震桥梁响应的影响

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摘要

Seismic responses of bridges isolated by lead rubber bearings under near-fault excitations are presented in this article. A bilinear force-deformation model is employed to represent the hysteretic behaviors of lead rubber bearings. The joint effects of ambient temperature, initial displacement, and lead core heating on the responses of seismically isolated bridges are investigated. Nonlinear time history analyses are conducted with the employed hysteretic models of lead rubber bearings. Comparisons of the responses with and without the joint effects are performed, in terms of maximum isolator displacements, maximum isolator forces, and base forces of the piers. Results show that ambient temperature, initial displacement, and lead core heating have significant joint effects on the responses of seismically isolated bridges. When such joint effects are ignored at low temperatures, the maximum isolator displacements could be overestimated, whereas the maximum isolator forces and the base forces could be underestimated. However, as for ambient temperatures above 20 degrees C, the maximum isolator displacements could be underestimated, whereas the maximum isolator forces and the base forces could be overestimated with small maximum isolator displacements and underestimated with large maximum isolator displacements.
机译:本文介绍了由铅橡胶轴承隔离的桥梁在近故障激励下的地震响应。采用双线性力-变形模型来表示铅橡胶轴承的滞后行为。研究了环境温度,初始位移和铅芯加热对隔震桥梁响应的共同影响。非线性时程分析是采用铅橡胶轴承的滞后模型进行的。根据最大隔离器位移,最大隔离器力和桥墩的基础力,比较有无联合效应的响应。结果表明,环境温度,初始位移和铅芯发热对地震隔离桥梁的响应具有显着的共同影响。当在低温下忽略此类接头效应时,最大隔离器位移可能会被高估,而最大隔离器力和基础力可能会被低估。但是,对于高于20摄氏度的环境温度,最大隔离器位移可能会被低估,而最大隔离器位移和基本力可能会在较小的最大隔离器位移时被高估,而在较大的最大隔离器位移时会低估。

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