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Finite element formulations and theoretical study for variable curvature friction pendulum system

机译:变曲率摩擦摆系统的有限元公式与理论研究

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The friction pendulum system (FPS), a type of base isolation technology, has been recognized as a very efficient tool for controlling the seismic response of a structure during an earthquake. However, previous studies have focused mainly on the seismic behavior of base-isolated structures far from active earthquake faults. In recent years, there have been significant studies on the efficiency of the base isolator when subjected to near-fault ground motions. It is suggested from these studies that the long-duration pulse of near-fault ground motions results in significant response of a base-isolated structure. In view of this, an advanced base isolator called the variable curvature friction pendulum system (VCFPS) is proposed in this study. The radius of the curvature of VCFPS is lengthened with an increase of the isolator displacement. Therefore, the fundamental period of the base-isolated structure can be shifted further away from the predominant period of near-fault ground motions. Finite element formulations for VCFPS have also been proposed in this study. The numerical results show that the base shear force and story drift of the superstructure during near-fault ground motion can be controlled within a desirable range with the installation of VCFPS. Therefore, the VCFPS can be adopted for upgrading the seismic resistance of the structures adjacent to an active fault.
机译:摩擦摆系统(FPS)是一种基础隔离技术,已被公认为是用于控制地震期间结构的地震响应的非常有效的工具。但是,以前的研究主要集中在远离活动地震断层的基础隔离结构的地震行为上。近年来,对基础绝缘子在发生近断层地震动时的效率进行了大量研究。这些研究表明,近断层地面运动的持续时间较长的脉冲会导致基本隔离结构的显着响应。有鉴于此,本研究提出了一种称为变曲率摩擦摆系统(VCFPS)的先进基础隔振器。 VCFPS的曲率半径随着隔离器位移的增加而延长。因此,可以将基础隔离结构的基本周期与近断层地震动的主要周期进一步偏离。在这项研究中还提出了用于VCFPS的有限元公式。数值结果表明,通过安装VCFPS可以将近断层地震动过程中上部结构的基础剪力和层间位移控制在理想范围内。因此,可以采用VCFPS来提高活动断层附近结构的抗震性能。

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