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Effect of isolator and ground motion characteristics on the performance of seismic-isolated bridges

机译:隔震和地震动特性对隔震桥梁性能的影响

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This paper presents the effect of isolator and substructure properties as well as the frequency characteristics and intensity of the ground motion on the performance of seismic-isolated bridges (SIBs) and examines some critical design clauses in the AASHTO Guide Specification for Seismic Isolation Design. For this purpose, a parametric study, involving more than 800 non-linear time history analyses of simplified structural models representative of typical SIBs, is conducted. The results from the parametric study are then used to derive important design recommendations and conclusions that may be used by bridge engineers to arrive to a more sound and economical design of SIBs. It is found that the SIB response is a function of the peak ground acceleration to peak ground velocity ratio of the ground motion. Thus, the choice of the seismic ground motion according to the characteristics of the bridge site is crucial for a correct design of the SIB. It is also found that the characteristic strength of the isolator may be chosen based on the intensity and frequency characteristics of the ground motion. Furthermore, the isolator post-elastic stiffness is found to have a notable effect on the response of SIBs.
机译:本文介绍了隔离器和子结构特性以及地震动的频率特性和强度对地震隔离桥(SIB)性能的影响,并研究了AASHTO地震隔离设计指南规范中的一些关键设计条款。为此,进行了一项参数研究,涉及代表典型SIB的简化结构模型的800多个非线性时程分析。然后,将参数研究的结果用于得出重要的设计建议和结论,桥梁工程师可使用这些建议和结论来获得更合理,更经济的SIB设计。发现SIB响应是地面运动的峰值地面加速度与峰值地面速度之比的函数。因此,根据桥梁部位的特征来选择地震地震动对于正确设计SIB至关重要。还发现,可以基于地面运动的强度和频率特性来选择隔离器的特性强度。此外,发现隔离器的后弹性刚度对SIB的响应具有显着影响。

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