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首页> 外文期刊>Journal of intelligent material systems and structures >A Theoretical Study On Piezoelectric Smart Isolation System For Seismic Protection Of Equipment In Near-fault Areas
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A Theoretical Study On Piezoelectric Smart Isolation System For Seismic Protection Of Equipment In Near-fault Areas

机译:压电式智能隔震系统在近断层区域的抗震保护理论研究

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摘要

In order to enhance the efficiency and safety of seismic isolation for equipment subjected to near-fault earthquakes that usually possess a long-period pulse-like waveform, a semi-active isolation system named piezoelectric smart isolation system (PSIS), composed of a sliding isolation platform and a piezoelectric friction damper (PFD), is proposed in this study. By controlling the embedded piezoelectric actuator with a DC voltage, the friction force of the PFD can be regulated; therefore, the PFD is able to provide a supplemental damping, which is controllable by a predetermined control law, for the PSIS system. In order to evaluate its isolation performance, the seismic responses of the PSIS was simulated numerically, and the isolation performance of the PSIS was also compared with those of a passive and an active isolation system. The results of these comparisons are discussed in this study. The simulation result has shown that the PSIS can prevent both the excessive isolator displacement and equipment acceleration induced by the long-period pulse component of a near-fault earthquake.
机译:为了提高遭受近故障地震的设备的地震隔离的效率和安全性,该设备通常具有长周期的脉冲状波形,因此,一种称为压电智能隔离系统(PSIS)的半主动隔离系统由一个滑动装置组成。隔离平台和压电摩擦阻尼器(PFD),在这项研究中提出。通过用直流电压控制嵌入式压电执行器,可以调节PFD的摩擦力。因此,PFD能够为PSIS系统提供补充阻尼,该阻尼可通过预定的控制律来控制。为了评估其隔离性能,对PSIS的地震响应进行了数值模拟,并将PSIS的隔离性能与无源和有源隔离系统进行了比较。这些比较的结果在本研究中进行了讨论。仿真结果表明,PSIS可以防止近断层地震的长周期脉冲分量所引起的过大的隔离器位移和设备加速。

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