基于环境激励的桥梁模态与损伤识别软件平台的开发

Jiahuan Li, Li Zhu, Wenyu Ji, Sunfeng You
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引用次数: 0

摘要

基于环境激励的模态和损伤识别可以大大提高高速铁路桥梁振动检测的效率。本文首先介绍了基于环境激励的模态分析中随机子空间识别、挑峰和频域分解方法的基本原理,并通过有限元计算和数值模拟验证了这三种方法的有效性。然后在有限元模型中加入损伤单元对裂纹进行模拟,利用随机子空间识别结果计算曲率模态差和曲率模态面积差平方比,验证其损伤识别和定位能力。最后,将上述模态与损伤识别技术相结合,开发了桥梁模态与损伤识别软件平台。最终结果表明,三种模态识别方法均能准确识别振动频率和振型,两种损伤识别方法均能准确识别和定位损伤,开发的软件平台简单高效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a software platform for bridge modal and damage identification based on ambient excitation

Modal and damage identification based on ambient excitation can greatly improve the efficiency of high-speed railway bridge vibration detection. This paper first describes the basic principles of stochastic subspace identification, peak-picking, and frequency domain decomposition method in modal analysis based on ambient excitation, and the effectiveness of these three methods is verified through finite element calculation and numerical simulation. Then the damage element is added to the finite element model to simulate the crack, and the curvature mode difference and the curvature mode area difference square ratio are calculated by using the stochastic subspace identification results to verify their ability of damage identification and location. Finally, the above modal and damage identification techniques are integrated to develop a bridge modal and damage identification software platform. The final results show that all three modal identification methods can accurately identify the vibration frequency and mode shape, both damage identification methods can accurately identify and locate the damage, and the developed software platform is simple and efficient.

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