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Earthquake Analysis of Hualien Large Scale Seismic Test Structure Considering Nonlinear Soil Behavior

机译:考虑非线性土性的花莲大型地震测试结构地震分析

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This paper presents the earthquake response analysis results on a large-scale seismic test structure which was built in Taiwan. The present analysis is carried out using a computer code KIESSI, which has been developed based on the axisymmetric finite element method incorporating infinite elements for the far-field soil region. The nonlinear behavior of the soil media is taken into account using an iterative procedure of the equivalent linearization. Two sets of the soil and structural properties are utilized as the initial properties. They are the unified model which were porivded by the group in charge of the experiments and the correlated model obtained from the correlation analysis using the forced vibration test (FVT) results. Three components of the ground acceleration time histories are artificially generated through an averaging process of the Fourier amplitude spectra of the ground accelerations measured near the test structure, and they are used as the control motions for earthquake analysis. It has been found that the predicted earthquake responses obtained using the generated control motions and the equivalent nonlinear procedure with the FVT-correlated model as the initial linear properties are compared very well with the observed responses.
机译:本文介绍了台湾建造的大型地震测试结构的地震响应分析结果。本分析是使用计算机代码KIESSI进行的,该代码基于轴对称有限元方法而开发,该方法结合了用于远场土壤区域的无限元。使用等效线性化的迭代过程考虑了土壤介质的非线性行为。两组土壤和结构特性被用作初始特性。它们是由负责实验的小组推导的统一模型,也是使用强制振动测试(FVT)结果从相关性分析中获得的相关模型。通过在测试结构附近测得的地面加速度的傅立叶振幅谱的平均过程,人工生成了地面加速度时间历史的三个分量,并将它们用作地震分析的控制运动。已经发现,使用FVT相关模型作为初始线性特性,使用生成的控制运动和等效非线性程序获得的地震预测响应与观察到的响应进行了很好的比较。

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