Study on the Vibration Effects of Cyclic Blasting on Bridge Structures under Construction

Yunhao Che, Enan Chi
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Abstract

This study investigates the impact of cyclic tunnel blasting on adjacent bridge structures under construction. Monitoring vibration velocities of the bridge deck, piers, and middle column adjacent to the Zhanma Tian Tunnel, a three-dimensional numerical model was developed using FLAC3D software, utilizing blasting vibration test data from the Zhanma Tian Tunnel project in Guizhou. Results show that, as the distance between the bridge and tunnel increases, vibration velocity at the bridge deck decreases more rapidly compared to the base of the pier. Peak vibration velocities recorded were 0.235 cm/s for the bridge deck, 0.081 cm/s for the pier base, and a predicted 0.209 cm/s for the middle column. The impact order from blasting vibrations on the bridge structure is: pier base, middle column, bridge deck. Peak vibration velocity induced by blasting ranged between 0.05 and 0.25 cm/s, within safe limits of bridge material strength. Eight daily blasting cycles do not compromise the safety of bridge structures located 43 m away.
循环爆破对施工中桥梁结构的振动影响研究
本研究探讨了隧道循环爆破对邻近在建桥梁结构的影响。利用贵州拦马田隧道工程的爆破振动测试数据,使用 FLAC3D 软件建立了一个三维数值模型,监测拦马田隧道相邻桥面、桥墩和中柱的振动速度。结果表明,随着桥隧距离的增加,桥面的振动速度比墩底的振动速度下降得更快。桥面记录到的峰值振动速度为 0.235 厘米/秒,墩底为 0.081 厘米/秒,中柱的预测值为 0.209 厘米/秒。爆破振动对桥梁结构的影响顺序为:墩底、中柱、桥面。爆破引起的峰值振动速度介于 0.05 至 0.25 厘米/秒之间,在桥梁材料强度的安全范围内。每天八次的爆破不会影响 43 米外桥梁结构的安全。
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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