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Study on Blast-induced Cumulative Damage of Tunnel Surrounding Rock and Its Application in Determining Allowed Safety Distance

机译:隧道围岩爆破累积破坏研究及其在允许安全距离确定中的应用

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The seismic wave derived from multiple blasts in a longspan tunnel will in all probability induce cumulative damage of surrounding rock, and affects surrounding rock's stability and even cause wall rock to collapse. In this study, international advanced apparatus, Blastmate III, was applied to monitor surrounding rock's response to blast vibration. Blast vibration signals are analyzed both in time and frequency using Hilbert-Huang Transform (HHT) method, which has excellent ability in time-frequency analysis of non-stationary random signals. The nonlinear characteristics of surrounding rock's cumulative damage are also analyzed using this method. The study uses UTEP to indicate the evolutionary process of cumulative damage in surrounding rock. The author puts forward a new thinking to determine the allowed safety distance by cumulative damage. This study is instructive and meaningful to wall rock supporting and reducing blast vibration in longspan tunnel.
机译:大跨度隧道中多次爆炸产生的地震波很可能会引起围岩的累积破坏,并影响围岩的稳定性,甚至导致围岩坍塌。在这项研究中,国际先进设备Blastmate III被用于监测围岩对爆炸振动的响应。使用Hilbert-Huang变换(HHT)方法对爆炸振动信号的时间和频率进行分析,该方法在非平稳随机信号的时频分析中具有出色的能力。使用该方法还分析了围岩累积损伤的非线性特征。该研究使用UTEP来指示围岩中累积损伤的演化过程。作者提出了一种新思路,可以通过累积损伤来确定允许的安全距离。该研究对大跨径隧道围岩支护和减少爆破振动具有指导意义。

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