Phase shift-based resonance assessment for in-service high-speed railway bridges

Seunghoo Jeong, Hyunmin Kim, Sung Il Kim, K. Lee, Junhwa Lee
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Abstract

Resonance in high-speed railway bridges can deteriorate the structural integrity and running safety of a train; thus, the resonant speed needs to be identified. Previous studies have proposed resonant conditions analytically, but their applications to in-service bridges are limited. Free vibration after the passage of a train was utilized to assess resonance, but it could not capture the natural frequency of the coupled system because the train-bridge interaction was neglected. This study proposed a practical framework for quantifying the resonance in a high-speed railway bridge using a phase shift. The static displacement of the railway bridge was numerically reconstructed using the train loading history. Phase angles were extracted by comparing the static and dynamic displacements, which were directly utilized to develop a novel resonance indicator in this study. Numerical simulations and field demonstrations validated the applicability of the proposed method for understanding the resonance behavior of full-scale railway bridges.
基于相移的在役高速铁路桥梁共振评估
高速铁路桥梁的共振会降低结构的完整性和列车运行的安全性,因此需要确定共振速度。以往的研究通过分析提出了共振条件,但这些研究在现役桥梁中的应用有限。有人利用列车通过后的自由振动来评估共振,但由于忽略了列车与桥梁之间的相互作用,因此无法捕捉到耦合系统的固有频率。本研究提出了一个实用的框架,利用相移来量化高速铁路桥梁的共振。铁路桥的静态位移是利用列车加载历史进行数值重建的。通过比较静态位移和动态位移,提取出相位角,并直接用于开发本研究中的新型共振指标。数值模拟和现场演示验证了所提方法在理解全尺寸铁路桥梁共振行为方面的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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