Proposition of isolation system applicable to the long-period earthquake ground motion (Method of changing natural frequency of isolation system with additional spring)

S. Kawamura, K. Nomura, T. Ise, M. Matsubara
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Abstract

At present, there are many types of isolation system, and many of them are designed for the short-period ground motion. The long-period ground motion has recently attracted the attention, though the isolation system for the short-period ground motion does not have an ability to suppress the vibration due to the long-period ground motion because the frequency of the long-period ground motion is near the natural frequency of the isolation system. In this study, a new isolation system is proposed for not only the short-period ground motion but also the long-period one. The basic concept is that the dynamic property, which is the natural frequency, is changed by adding a spring when the amplitude of isolation table exceeds a threshold value. The validity of the method is checked by the numerical simulation using a single-degree-of-freedom system against the sine sweep ground motion and the actual earthquake ground motion. As a result, it is shown that the resonance can be suppressed by the proposed method. Then the applicability is checked by using the experimental setup. In the experiment, the additional spring is connected with the isolation table by using the clamping mechanism. The adequate clearance between the isolation table and the additional spring is determined in advance. As a result, the system can suppress the resonance phenomenon, so that it was concluded that the proposed system has a sufficient ability to suppress the resonance due to the long-period ground motion.
适用于长周期地震动的隔震系统的提出(用附加弹簧改变隔震系统固有频率的方法)
目前,有许多类型的隔震系统,其中许多是针对短周期地震动而设计的。长周期地震动近年来引起了人们的关注,但由于长周期地震动的频率接近隔震系统的固有频率,短周期地震动的隔震系统不具备抑制长周期地震动的能力。在本研究中,提出了一种新的隔震系统,不仅适用于短周期地震动,也适用于长周期地震动。其基本概念是,当隔振表的幅值超过阈值时,通过增加弹簧来改变其动态特性,即固有频率。用单自由度系统对正弦扫描地震动和实际地震地震动进行了数值模拟,验证了方法的有效性。结果表明,该方法可以有效地抑制共振。然后通过实验装置验证了该方法的适用性。在实验中,附加弹簧通过夹紧机构与隔离台连接。隔离表和附加弹簧之间的适当间隙是事先确定的。结果表明,该系统能够抑制长周期地震动引起的共振现象,从而表明该系统有足够的能力抑制长周期地震动引起的共振。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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