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Study on Quasi-Static Loading Protocols considering the Action Characteristics of Long-Period Ground Motions

机译:考虑到长期地面运动的动作特征的准静态加载协议研究

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Due to abundant low-frequency components of long-period ground motions (LPGMs), long-period structures are susceptible to severe damage. The corresponding time-history displacement responses have significant “large-displacement” and “long-duration” characteristics. These action characteristics essentially reflect the different loading paths imposed on structures of LPGMs from ordinary ground motions (OGMs). Hence, revealing the influence mechanism of the action characteristics on the seismic performance of structural components is the key to investigating the influence of LPGMs on the whole structure. This paper presents a kind of quasi-static loading protocol considering the action characteristics of LPGMs. Firstly, nonlinear time-history analyses on structural systems subjected to 50 selected representative LPGMs were conducted. Inelastic cycles and corresponding amplitudes of time-history displacement responses under LPGMs were statistically analyzed through the rainflow method. Then, considering two of the most significant factors, structural period and target ductility, a prediction model of cycle number and cycle amplitude was obtained by regression. On this basis, the quasi-static loading protocol considering the action characteristics of LPGMs was developed. Proposed protocols can be directly applied to experimental investigations on the seismic performance for structural components under LPGMs.
机译:由于长期地面运动(LPGMS)的丰富低频分量,长期结构易受严重的损害。相应的时间历史位移响应具有显着的“大位移”和“长持续时间”特征。这些动作特性基本上反映了普通地运动(OGM)对LPGMS结构施加的不同负载路径。因此,揭示了作用特征对结构组分的地震性能的影响机制是研究LPGM对整个结构的影响的关键。本文介绍了一种考虑LPGMS的动作特性的准静态加载协议。首先,进行对经过50种所选代表性LPGM的结构系统上的非线性时间历史分析。通过雨流程方法统计地分析LPGMS下的无弹性循环和相应的时间历史置换响应响应。然后,考虑到两个最重要的因素,结构时段和目标延展性,通过回归获得循环数和循环幅度的预测模型。在此基础上,开发了考虑LPGMS的动作特征的准静态加载协议。提出的方案可以直接应用于LPGMS下结构组分的地震性能的实验研究。

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