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Wavelet-based evolutionary response of multi-span structures including wave-passage and site-response effects

机译:基于小波的多跨度结构演化响应,包括波通过和位点响应效应

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摘要

Stochastic seismic wavelet-based evolutionary response of multispan structures including wave-passage and site-response effects is formulated in this paper. A procedure to estimate site-compatible parameters of surface-to-bedrock frequency response function (FRF) by using finite-element analysis of the supporting soil medium is proposed. The earthquake energy content is represented by a composite power spectrum density function contributed by the surface-to-bedrock FRF and bedrock power spectra. A long span multisupport structure is subjected to spatially varying differential support motions where the spatial-variability is represented by bedrock parametric coherency models and time-lags. In addition to the time-lags from wave-passage effects, the site-response effects from different soil conditions at the supports are characterized by frequency-dependent time-lags. In an illustrative case study, a three-span, two-dimensional hangar frame is analyzed using the proposed formulations. The time-lags resulting from site-response effects and computed by different FRFs show different variation in trends and frequency content. The site-response effect is found to introduce additional frequency nonstationarity and leads to an increase in the frame responses but with slower attenuation in time.
机译:本文提出了基于随机地震小波的多跨结构演化响应,包括波通过和场地响应效应。提出了一种利用支持性土壤介质的有限元分析来估算地基-频率响应函数(FRF)的现场相容性参数的程序。地震能量含量由地表基岩FRF和基岩功率谱贡献的复合功率谱密度函数表示。大跨度多支撑结构要经受空间变化的差分支撑运动,其中空间变异性由基岩参数相干模型和时滞表示。除了波通过效应带来的时滞外,支架上不同土壤条件的位点响应效应还具有随频率变化的时滞特征。在一个示例性案例研究中,使用建议的公式分析了一个三跨度,二维机库框架。由站点响应效应引起并由不同FRF计算的时滞显示趋势和频率含量的不同变化。发现位点响应效应会导致额外的频率不稳定,并导致帧响应增加,但时间衰减较慢。

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