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Finite element formulation and shaking table tests of direction-optimized-friction-pendulum system

机译:方向优化摩擦摆系统的有限元公式化和振动台测试

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Recently, in several countries the application of base isolation technology has already been proven as the effective and economically viable method to enhance the capability of structures in seismic mitigation. In this study, an advanced base isolation system called the direction-optimized-friction-pendulum system (DO-FPS) is proposed and investigated to determine its mechanical behavior through finite element formulation and examine its efficiency in seismic mitigation by conducting the shaking table test. Based on finite element formulation, we infer that the natural period, the capacity of the bearing displacement and damping effect for a DO-FPS isolator change continually during earthquakes. Therefore, DO-FPS can avoid the resonance and provide an effective capacity for bearing displacement and damping during the earthquakes. Simultaneously, the shaking table test also illustrates that DO-FPS possesses outstanding seismic mitigation capabilities.
机译:最近,在一些国家,基础隔震技术的应用已被证明是增强结构在减震中的能力的有效且经济可行的方法。在这项研究中,提出了一种先进的基础隔离系统,称为方向优化摩擦摆系统(DO-FPS),并进行了研究,以通过有限元公式确定其机械性能,并通过进行振动台试验来检验其在减震中的效率。基于有限元公式,我们推论在地震过程中,DO-FPS隔振器的自然周期,轴承位移能力和阻尼效应会不断变化。因此,DO-FPS可以避免共振,并为地震期间的轴承位移和阻尼提供有效的能力。同时,振动台测试还表明DO-FPS具有出色的减震能力。

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