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首页> 外文期刊>Tunnelling and underground space technology >Temporal-spatial evolution of acoustic emission during progressive fracture processes around tunnel triggered by blast-induced disturbances under uniaxial and biaxial compression
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Temporal-spatial evolution of acoustic emission during progressive fracture processes around tunnel triggered by blast-induced disturbances under uniaxial and biaxial compression

机译:单轴和双轴压缩下爆炸诱发扰动触发的隧道渐进破裂过程中声发射的时空演变

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摘要

Under high stress conditions in deep underground engineering projects, frequent and strong blast-induced disturbances can easily lead to spalling and collapse of the surrounding rock around tunnels, even generating dynamic hazards such as rockburst. Herein, the acoustic emission (AE) technique was adopted to monitor the occurrence of progressive fracture process around tunnels under static stress and dynamic disturbance. The results showed that the macroscopic cracks around the circular opening occurred due to the combined action of the external loading and blast-induced disturbances. The spatial distribution of AE events directly reflected the damage evolution inside the specimens, and the areas of concentration of AE event were found to be consistent with the locations of the macroscopic fractures. This study provides an insight for the depth and range of the failure zone around the tunnel. The failure area and morphology around the tunnel are closely related to the external stress and blasting disturbance. The dynamic disturbance can deepen the damage degree and accelerate the failure speed of the tunnel. The power-law characteristics of AE signals after blasts can be used to evaluate the time required for rock mass to return to a stable state, and apparent stress is a meaningful measure to judge the stress level in rock mass.
机译:在深层地下工程项目中处于高应力条件下,频繁而强烈的爆炸引起的干扰很容易导致隧道周围的岩石剥落和坍塌,甚至产生诸如岩爆之类的动态危害。在本文中,采用声发射(AE)技术来监测在静态应力和动态扰动作用下隧道周围逐渐破裂的过程。结果表明,圆形开口周围的宏观裂纹是由于外部载荷和爆炸引起的干扰共同作用而产生的。声发射事件的空间分布直接反映了标本内部的损伤演化,发现声发射事件的集中区域与宏观裂缝的位置一致。这项研究为隧道周围破坏区域的深度和范围提供了见识。隧道周围的破坏区域和形态与外部应力和爆破扰动密切相关。动态扰动可以加深破坏程度,加快隧道的破坏速度。爆炸后AE信号的幂律特性可用于评估岩体恢复稳定状态所需的时间,而表观应力是判断岩体应力水平的一种有意义的措施。

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