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Development of fragility functions as a damage classification/prediction method for steel moment-resisting frames using a wavelet-based damage sensitive feature

机译:利用基于小波的损伤敏感特征,脆弱性的发展成为抗弯矩钢框架的损伤分类/预测方法

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摘要

Fragility functions are commonly used in performance-based earthquake engineering for predicting the damage state of a structure subjected to an earthquake. This process often involves estimating the structural damage as a function of structural response, such as the story drift ratio and the peak floor absolute acceleration. In this paper, a new framework is proposed to develop fragility functions to be used as a damage classification/prediction method for steel structures based on a wavelet-based damage sensitive feature (DSF). DSFs are often used in structural health monitoring as an indicator of the damage state of the structure, and they are easily estimated from recorded structural responses. The proposed framework for damage classification of steel structures subjected to earthquakes is demonstrated and validated with a set of numerically simulated data for a four-story steel moment-resisting frame designed based on current seismic provisions. It is shown that the damage state of the frame is predicted with less variance using the fragility functions derived from the wavelet-based DSF than it is with fragility functions derived from an alternate acceleration-based measure, the spectral acceleration at the first mode period of the structure. Therefore, the fragility functions derived from the wavelet-based DSF can be used as a probabilistic damage classification model in the field of structural health monitoring and an alternative damage prediction model in the field of performance-based earthquake engineering.
机译:易碎性函数通常用于基于性能的地震工程中,以预测遭受地震的结构的损坏状态。此过程通常涉及根据结构响应(例如,楼层漂移率和最高楼板绝对加速度)估算结构破坏。在本文中,提出了一个新的框架来开发脆弱性函数,该函数将基于基于小波的损伤敏感特征(DSF)用作钢结构的损伤分类/预测方法。 DSF通常用于结构健康状况监测,以指示结构的损坏状态,并且可以从记录的结构响应中轻松估算出它们。利用一套基于当前地震规定设计的四层钢抗力矩框架的一组数值模拟数据,论证并验证了所提议的地震钢结构损伤分类框架。结果表明,使用基于小波的DSF得出的脆弱性函数预测的框架损坏状态的方差要小于基于替代的基于加速度的测度得到的脆弱性函数的预测,即第一模式周期的频谱加速度。结构。因此,基于小波的DSF得出的脆弱性函数可以用作结构健康监测领域的概率损伤分类模型,以及基于性能的地震工程领域的替代损伤预测模型。

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