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首页> 外文期刊>Journal of structural engineering >Building Damage Estimates Using Slowness Change in Propagating Waves
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Building Damage Estimates Using Slowness Change in Propagating Waves

机译:使用传播波的慢度变化估算建筑物的破坏

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This paper presents a damage-evaluation method that estimates the damage level of buildings using ambient vibration measurement and a seismic interferometry technique. A new index, named slowness change and which directly relates the reduction in story stiffness to the vibration signal's travel-time delays in propagating waves, is introduced. The sensitivity of the slowness change to damage was examined through ambient vibration testing for a quarter-scale steel frame, where damage was simulated by removing steel links at member ends. The slowness changes computed from the measurement data increased significantly as the number of fractures increased and the story stiffness decreased. The results showed a strong relationship between the location and amount of simulated fractures and the slowness change. The paper also discusses the signal-processing and measurement parameters required to accurately identify the parameters of the propagating waves, error associated with signal processing and measurement, and a borderline between detectable and undetectable damage for both beam fractures and column fractures in steel frames. (C) 2016 American Society of Civil Engineers.
机译:本文提出了一种损伤评估方法,该方法使用环境振动测量和地震干涉技术来估计建筑物的损伤程度。引入了一个新的指标,称为慢度变化,该指标将故事刚度的降低与传播波中振动信号的传播时间延迟直接相关。通过对四分之一规模钢框架的环境振动测试来检查慢度变化对损伤的敏感性,其中通过移除构件端部的钢链来模拟损伤。根据测量数据计算出的慢度变化随着裂缝数量的增加和层的刚度的降低而显着增加。结果表明,模拟裂缝的位置和数量与慢度变化之间存在很强的关系。本文还讨论了准确识别传播波参数所需的信号处理和测量参数,与信号处理和测量相关的误差,以及钢框架中梁断裂和柱断裂的可检测和不可检测损伤之间的界限。 (C)2016年美国土木工程师学会。

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