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Vibration-Based Damage Evaluation of a Reinforced Concrete Frame Subjected to Cyclic Pushover Testing

机译:基于振动的循环式推送测试的钢筋混凝土框架的振动损伤评价

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摘要

This research investigated the changes in vibration characteristics of a simple reinforced concrete (RC) frame subjected to incremental cyclic pushover testing as a basis for detection, quantification, and localization of damage in RC frames using vibration data obtained before and after a seismic event. A half-scale one-story one-bay plane frame was subjected to progressive damage through cyclic lateral loading to incrementally increasing drift ratios. Ambient and impact vibration tests were performed at each increment of drift ratio, and modal analyses of the acceleration responses obtained at seven locations on the frame were carried out with the acceleration responses measured at seven different locations on the frame to track changes in the dynamic characteristics. Linear degradation of the lowest two vibration frequencies was identified with increasing drift ratio, which was regarded as a promising result towards detection and quantification of damage. For localization, a flexibility-based damage localization procedure, the damage locating vector (DLV) approach, was explored. Localization results mostly agreed with the observed damage, and the approach was found to have potential for use in prioritizing the suspected damage locations in the structure for detailed inspections.
机译:本研究调查了在一个简单的振动特性的变化进行钢筋混凝土(RC)帧到增量环状侧推测试作为用于检测,定量,并且在使用之前和地震事件之后获得的振动数据RC帧损坏的定位提供了基础。的半刻度的一个故事单跨平面框架通过环状横向负载经受渐进损害漂移比率逐渐增加。的环境温度和冲击振动试验在漂移比每个增量进行的,并在框架上的七个位置获得的加速度响应的模态分析用在七个不同位置处的框架上测得的加速度响应,以跟踪的动态特性的变化进行。最低的两个振动频率的线性劣化,鉴定与漂移比率增加,这被认为是朝着检测和损伤的定量的有前途的结果。用于定位,基于灵活性损伤定位过程中,损坏定位矢量(DLV)的方法,进行了探讨。本地化的结果大多与所观察到的损伤同意,并找到了方法,这对于在优先在结构中的可疑的损坏部位进行详细检查利用潜力。

著录项

  • 作者

    Burcu Gunes; Oguz Gunes;

  • 作者单位
  • 年度 2021
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  • 原文格式 PDF
  • 正文语种 eng
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