首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2006 vol.8: Seismic Engineering >SEISMIC CONTROL OF STRUCTURE USING ENERGY ABSORPTION BY ELASTO-PLASTIC HYSTERESIS LOOP CHARACTERISTICS
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SEISMIC CONTROL OF STRUCTURE USING ENERGY ABSORPTION BY ELASTO-PLASTIC HYSTERESIS LOOP CHARACTERISTICS

机译:弹性-滞回特性的能量吸收对结构的地震控制

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摘要

Reduction of seismic response is one of the most important problems of aseismic design of the structures. When the structures are subjected to excess seismic load, force-displacement relation has hysteresis loop characteristic. In this paper, seismic control of structure using energy absorption by elasto-plastic characteristic is examined by analytical method. As elasto-plastic characteristic, bilinear hysteresis loop is used. The equation of motion is equivalently linearized. The maximum value of the mean square value and absorbed energy are obtained for some values of the damping ratio, the natural period, the yield displacement and the stiffness ratio. It is found that the maximum value of the mean square value of the response decreases with the decrease of the yield displacement and the stiffness ratio. It is also found that the maximum value of the mean square value decreases with the increase of absorbed energy. The proposed method is applied to the secondary system and the same results are obtained.
机译:减少地震响应是结构抗震设计的最重要问题之一。当结构承受过大的地震荷载时,力-位移关系具有磁滞回线特性。本文通过解析方法研究了利用弹塑性特征吸收能量的结构的地震控制方法。作为弹塑性特性,使用了双线性磁滞回线。运动方程等​​效地线性化。对于阻尼比,自然周期,屈服位移和刚度比的某些值,可以获得均方值和吸收能量的最大值。发现随着屈服位移和刚度比的减小,响应的均方值的最大值减小。还发现,均方值的最大值随着吸收能量的增加而减小。将该方法应用于二次系统,得到了相同的结果。

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