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Response of a historical short-span railway bridge to passing trains: 3-D deflections and dominant frequencies derived from Robotic Total Station (RTS) measurements

机译:历史悠久的短跨铁路桥梁对过往列车的响应:从机器人全站仪(RTS)测量得出的3-D挠度和主频

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摘要

Based on measurements with a Robotic Total Station (RTS), we computed the displacement characteristics (pattern, amplitude, frequency) of the Gorgopotamos Bridge, a short-span, historical bridge in central Greece, in response to passing trains. Vertical deflections of selected points of the midspan were found to range up to 6 mm for heavy cargo trains, exceeding the noise level of 1-2 mm, and were analyzed in nearly semi-static and dynamic components. Dominant frequencies of the bridge span, in the range 3.18-3.63 Hz, were also computed. Evidence of possible lateral and longitudinal deflections was also found. Measurement noise and quality of results were controlled on the basis of the analysis of apparent displacements of reference points during excitation and of non-excitation intervals, as well as on the basis of structural constraints. The amplitude of measured deflections was found to correlate with the load, and a somewhat distinct oscillation waveform was observed in the cases of large oscillations, despite clipping affecting highly dynamic RTS recordings. Observed deflections are large for modern standards, but reasonable for a >100 years old bridge partly destroyed and rebuilt twice during World War II.
机译:根据机器人全站仪(RTS)的测量结果,我们计算了Gorgopotamos桥的位移特性(模式,振幅,频率),Gorgopotamos桥是希腊中部的一座短跨历史桥梁,以响应经过的火车。对于重型货运列车,中跨选定点的垂直偏转范围高达6 mm,超过了1-2 mm的噪声水平,并且对近半静态和动态分量进行了分析。还计算了桥梁跨度的主频,范围为3.18-3.63 Hz。还发现了可能的横向和纵向偏斜的证据。测量噪声和结果质量的控制是基于对激励期间和非激励间隔内参考点的视在位移的分析,以及结构上的限制。发现偏转的幅度与负载相关,并且在大振荡的情况下,尽管削波影响了高度动态的RTS记录,但观察到的振荡波形有些不同。观察到的挠度对于现代标准而言很大,但是对于在第二次世界大战期间被部分毁坏并重建两次的100多年历史的桥梁来说是合理的。

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