首页> 外文期刊>The Structural Design of Tall and Special Buildings >Spectrum characterization of two types of long‐period ground motions and seismic behavior of frame‐core wall structures under multidimensional earthquake records
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Spectrum characterization of two types of long‐period ground motions and seismic behavior of frame‐core wall structures under multidimensional earthquake records

机译:多维地震记录下框架心墙结构两种长周期地震动和地震行为的频谱表征

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摘要

With the wide application of long period such as high-rise and super high-rise buildings, long-period ground movement can easily cause resonant effects and serious destructions on the long-period structures. The Fourier amplitude spectrum and response spectrum of three translational components about typical and actually measured long-period ground motions show that all three translational components exhibit the long-period characterization and the dynamic behavior and seismic damage of high-rise buildings subjected to multidimensional long-period earthquake records urgently deserves further study. Then, the analytical method of numerical simulation was employed to establish the finite element model of a high-rise frame-core wall structure with the fundamental period of 2.64s. And the suggested modeling techniques and the accuracy of the numerical method were verified. Furthermore, the nonlinear time history analysis on the reinforced concrete frame-core wall structures subjected to multidimensional long-period earthquake records was conducted, and the seismic behavior of the structure were studied. The analytical results show that the mutual interaction on strength and stiffness under 2-D or 3-D long-period seismic action will obviously amplify the dynamic behavior and seismic damage of the structure. The distribution rule about the weakest story, the design focus of seismic defense line, the distribution rule of hysteretic energy and the characteristics of destructive mode can provide a theoretical basis for the seismic design of high-rise structures subjected to long-period earthquake records.
机译:随着高层建筑和超高层建筑等长期应用的广泛发展,长期的地面运动很容易在长期结构上引起共振效应和严重破坏。关于典型的和实际测量的长周期地震动的三个平移分量的傅立叶振幅谱和响应谱表明,这三个平移分量均表现出长周期特征,并且高层建筑在多维长周期地震作用下具有动态行为和地震破坏。时期的地震记录急需进一步研究。然后,采用数值模拟的分析方法,建立了周期为2.64s的高层框架芯墙结构的有限元模型。并验证了所提出的建模技术和数值方法的准确性。此外,对钢筋混凝土框架心墙结构进行了多次长期地震记录的非线性时程分析,并研究了该结构的抗震性能。分析结果表明,在2D或3D长期地震作用下,强度和刚度的相互作用将明显放大结构的动力特性和地震破坏。有关最薄层的分布规律,抗震防线的设计重点,磁滞能量的分布规律以及破坏模式的特点,可以为高层结构长期地震记录的抗震设计提供理论依据。

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