反褶积
余震
脉冲响应
环境振动
地质学
地震学
加速度计
干涉测量
振动
结构健康监测
结构工程
地震干涉测量
声学
工程类
计算机科学
数学
物理
光学
算法
数学分析
操作系统
作者
Nathalia Jaimes,G. A. Prieto,Carlos Fernández Rodríguez
出处
期刊:Seismological Research Letters
[Seismological Society]
日期:2021-12-22
卷期号:93 (2A): 931-942
被引量:3
摘要
Abstract Seismic structural health monitoring allows for the continuous evaluation of engineering structures by monitoring changes in the structural response that can potentially localize associated damage that has occurred. For the first time in Colombia, a permanent and continuous monitoring network has been deployed in a 14-story ecofriendly steel-frame building combined with a reinforced concrete structure in downtown Bogota. The six three-component ETNA-2 accelerometers recorded continuously for 225 days between July 2019 and February 2020. We use deconvolution-based seismic interferometry to calculate the impulse response function (IRF) using earthquake and ambient-vibration data and a stretching technique to estimate velocity variations before and after the Ml 6.0 Mesetas earthquake and its aftershock sequence. A consistent and probably permanent velocity variation (2% reduction) is detected for the building using ambient-vibration data. In contrast, a 10% velocity reduction is observed just after the mainshock using earthquake-based IRFs showing a quick recovery to about 2%. A combination of both earthquake-based and ambient-vibration-based deconvolution interferometry provides a more complete picture of the state of health of engineering structures.
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