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A direct displacement-based method for the seismic design of bridges on bi-linear isolation devices

机译:基于线性位移的双线性隔离装置桥梁抗震设计方法

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摘要

This paper presents an extension of the displacement-based design procedure for bridges supported on hysteretic isolation bearings. An equivalent damping ratio, derived from the particular characteristics of bridges supported on lead rubber bearings (LRBs), is proposed. The trend of the equivalent damping ratio that is obtained is similar to that of the hysteretic energy bearing dissipation, over the whole range of inelastic displacement demands that is expected for this type of device. The proposed method emphasizes material strain control by means of the lateral displacement of isolator bearings and the lateral displacement of the pier top. The response is obtained directly from the elastic displacement response spectrum and is applicable to regular bridges with rigid superstructures that can be idealized as a single degree of freedom (SDOF) system. The proposed methodology improves the displacement prediction capability of the linear equivalent model when it is applied to bridges supported on LRB isolators, and low data scatter is obtained, especially for displacements. Pier displacements are slightly underestimated and base shears are overestimated, compared to inelastic time-history results.
机译:本文介绍了滞后隔震支座上桥梁基于位移的设计程序的扩展。提出了一种等效阻尼比,该阻尼比由铅橡胶轴承(LRB)上支撑的桥的特殊特性得出。在此类设备所预期的整个非弹性位移要求范围内,获得的等效阻尼比的趋势与磁滞能量轴承耗散的趋势相似。所提出的方法通过隔离轴承的侧向位移和墩顶的侧向位移来强调材料的应变控制。该响应是直接从弹性位移响应谱中获得的,适用于具有刚性上部结构的常规桥梁,可以将其理想化为单自由度(SDOF)系统。当将其应用于LRB隔离器支撑的桥梁时,所提出的方法提高了线性等效模型的位移预测能力,并且获得的数据散布小,尤其是对于位移。与非弹性时程结果相比,桥墩位移被低估了些,基剪被高估了。

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