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Passive and hybrid mitigation of potential near-fault inner pounding of a self-braking seismic isolator

机译:自制动地震隔离器潜在的近故障内部冲击的被动和混合缓解

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A seismic isolated structure is usually a long-period structural system, which may encounter a low-frequency resonance problem when subjected to a near-fault earthquake that usually has a long-period pulse-like waveform. This long-period wave component may result in an enlargement of the base displacement and a decrease of the isolation efficiency. To overcome this problem, a rolling-based seismic isolator, referred to as roll-n-cage (RNC) isolator, has been recently proposed. The RNC isolator has a built-in buffer (braking) mechanism that limits the peak isolator displacements under severe earthquakes and prevents adjacent structural pounding. This paper addresses the problem of passive and hybrid mitigation of the potential inner pounding of the self-braking RNC isolator under near-fault earthquakes. Numerical results show that the RNC isolator can intrinsically limit the isolator displacements under near-fault earthquakes with less severe inner pounding using additional hysteretic damping and active control forces. (C) 2014 Elsevier Ltd. All rights reserved.
机译:地震隔离结构通常是长周期的结构系统,当遭受通常具有长周期脉冲状波形的近断层地震时,可能会遇到低频共振问题。该长周期的波分量可能导致基极位移的增大和隔离效率的降低。为了克服这个问题,近来提出了一种基于滚动的地震隔离器,称为防滚架(RNC)隔离器。 RNC隔离器具有内置的缓冲(制动)机制,可限制严重地震下的峰值隔离器位移并防止相邻的结构碰撞。本文解决了在近断层地震下被动制动和混合缓解自制动RNC隔离器潜在内部冲击的问题。数值结果表明,RNC隔振器可以通过使用附加的滞回阻尼和主动控制力,在不发生严重内部震荡的情况下,在近断层地震中固有地限制隔振器的位移。 (C)2014 Elsevier Ltd.保留所有权利。

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