首页> 外文期刊>Journal of vibration and control: JVC >Structural vibration control with the implementation of a pendulum-type nontraditional tuned mass damper system
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Structural vibration control with the implementation of a pendulum-type nontraditional tuned mass damper system

机译:具有摆型非传统调谐质量阻尼系统的结构振动控制

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摘要

Self-centering systems, such as base-rocking-wall systems, have been studied and demonstrated to be capable of achieving enhanced seismic-resisting performance. For these rocking-wall systems, unbonded post-tensioning strands and damage-permitted energy-dissipating fuses are usually implemented along the full height of the walls. Structural damage and residual deformation of main structures can be mitigated through deformation of the fuses which are replaceable after strong earthquakes. An innovative self-centering system referred to as a pendulum-type nontraditional tuned mass damper system is newly proposed in this paper, which can be deemed to be an inverted rocking system. Pendulum components can automatically return to their original position due to the effect of gravity, without any post-tensioning strands being required. Energy dissipators are only implemented between the bottom end of the pendulum component and the ground, and they can be easily fabricated and replaced. Both experimental and numerical studies have been carried out to examine seismic performance of the pendulum-type nontraditional tuned mass damper system, and it is found that satisfactory control of interstory drift and floor absolute acceleration can be achieved, while small movement space is required.
机译:已经研究并证明了自定心系统,例如底摇动墙系统,以实现增强的抗震性能。对于这些摇摆壁系统,通常沿着墙壁的完整高度来实现未粘附的后张紧股线和损坏的能量耗散熔丝。主要结构的结构损伤和残余变形可以通过变形来减轻在强烈地震后更换的熔丝。在本文中新提出了一种创新的自定心系统,称为摆型非传统调谐质量阻尼系统,其可以被认为是倒摇摆系统。由于重力的效果,摆锤组件可以自动返回到原来的位置,而没有任何张紧的绞合线。能量散热器仅在摆锤部件和地面的底端之间实施,并且可以容易地制造和更换它们。已经进行了实验和数值研究以研究摆型非传统调谐质量阻尼系统的地震性能,并且发现可以实现对壁垒漂移和地板绝对加速的令人满意的控制,而需要小的运动空间。

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