首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2007 >FINITE ELEMENT FORMULATIONS FOR DIRECTION OPTIMIZED-VARIABLE CURVATURE FRICTION PENDULUM SYSTEM
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FINITE ELEMENT FORMULATIONS FOR DIRECTION OPTIMIZED-VARIABLE CURVATURE FRICTION PENDULUM SYSTEM

机译:定向优化可变曲率摆锤系统的有限元公式

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The base isolation technology has been recognized as a very effective tool for controlling the seismic response of a structure during earthquakes. However, it is suggested from recent studies that the earthquakes with long predominant periods results in significant seismic responses of the base isolated structure. In view of this, a new base isolator called the Directional Optimized-Variable Curvature Friction Pendulum System (DO-VCFPS) has been proposed in this study. The radii of the curvature of the trench concave surface and the spherical sliding surface are lengthened with increasing the sliding displacement. Therefore, the isolation period can be shifted further away from the predominant periods of ground motions. Furthermore, by using the series connection of a trench concave surface and a spherical sliding surface, the isolation period is a function of the angle between the directions of the resultant displacement. In order to prove the efficiency of the proposed device, the finite element formulations of the DO-VCFPS have been derived in this study. The numerical results show that the combination of the advantages of the Variable Curvature Friction Pendulum System (VCFPS) and the Directional Optimization Friction Pendulum System (DO-FPS) can improve the disadvantages of a base isolated structure with fixed isolation period.
机译:基础隔离技术已被认为是控制地震期间结构的地震响应的非常有效的工具。但是,最近的研究表明,长周期的地震会导致基础隔震结构产生明显的地震响应。有鉴于此,本研究提出了一种新的基础隔离器,称为方向最优可变曲率摩擦摆系统(DO-VCFPS)。随着滑动位移的增加,沟槽凹面和球形滑动面的曲率半径变长。因此,可以将隔离周期与地面运动的主要周期进一步移开。此外,通过使用沟槽凹面和球形滑动面的串联连接,隔离周期是所得位移方向之间的角度的函数。为了证明所提出的装置的效率,本研究中推导了DO-VCFPS的有限元公式。数值结果表明,变曲率摩擦摆系统(VCFPS)和方向优化摩擦摆系统(DO-FPS)的优点相结合,可以改善隔离周期固定的基础隔震结构的弊端。

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