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Experimental Study on Influence of Hardening of Isolator in Multiple Isolation Building

机译:隔震层硬化对多层隔震结构影响的试验研究

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An innovative multiple isolation building system is proposed and the influence of hardening in seismic isolators on the response of a multiple isolation building is investigated by shaking table vibration tests for a scaled structural model. From the observation in recent earthquake disasters in far-fault ground motions, e.g. the 2011 off the Pacific coast of Tohoku earthquake, a significant concern is reminded that the long-period and long-duration ground excitation may cause severe damages to the existing base-isolated buildings. In order to enhance the seismic vibration suppression performance of those buildings, the multiple isolation structure has been developed recently as one of the innovative solutions. The multiple isolation structure is defined as a seismic isolated building which has multiple isolation stories by inserting supplemental isolators in the middle story in addition to the base. In this paper, the advantages of the proposed multiple isolation system subjected to an extremely strong far-field earthquake ground motion as the worst scenario are studied by the vibration test for a scaled model. In the scaled model, a non-linear restoring-force characteristic (hardening) is provided by the geometrical non-linearity which can be realized by inserting linear springs in the direction perpendicular to the vibration direction. The influence of this hardening property on the structural responses is studied by comparing with the responses of the same model without hardening effect. In the comparison with the base-isolated building, the fundamental seismic vibration suppression performances are evaluated in terms of the transfer functions of both a multiple isolation system and a base isolation system to the base input by sweeping frequencies of stationary sine waves using a controllable compact shaking table. In the numerical simulations, the effect of the friction in the isolation layers is also investigated.
机译:提出了一种创新的多层隔震建筑系统,并通过振动台振动试验对比例结构模型研究了地震隔离器中的硬化对多层隔震建筑响应的影响。根据最近的地震灾难中远断层地面运动的观察,例如在2011年东北太平洋沿岸地震中,需要特别关注的是,长期和长时间的地面激励可能会对现有的基础隔离建筑物造成严重破坏。为了提高这些建筑物的地震振动抑制性​​能,近来已经开发了多重隔离结构作为创新解决方案之一。多重隔离结构定义为地震隔离建筑物,通过在基础层之外的中间层中插入辅助隔离器,从而具有多个隔离层。在本文中,通过按比例缩放模型的振动测试,研究了所提出的多重隔离系统在极强的远场地震地震动下作为最坏情况的优势。在比例模型中,通过几何非线性提供非线性恢复力特性(硬化),这可以通过在垂直于振动方向的方向上插入线性弹簧来实现。通过与没有硬化效果的相同模型的响应进行比较,研究了这种硬化特性对结构响应的影响。与基础隔震建筑物进行比较时,通过使用可控紧凑型扫掠固定正弦波的频率,根据多重隔震系统和基础隔震系统到基础输入的传递函数,评估了基本地震振动抑制性​​能摇表。在数值模拟中,还研究了隔离层中摩擦的影响。

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