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Experimental simulation investigation on rockburst induced by spalling failure in deep circular tunnels

机译:深圆形隧道剥落破坏引起的岩爆试验模拟研究

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摘要

Spalling and rockburst are two common failure modes in deep hard-rock tunnels and they exhibit a strong correlation. In this paper, the process of rockburst induced by spalling is investigated. The uniaxial compressive strength and rockburst tendency of red sandstone are measured. Four different initial stress conditions are set up, and cubic red sandstone samples with a prefabricated hole are tested by a true-triaxial test system. During the experimental process, the failure of the hole sidewall is monitored and recorded in real time by a micro-camera. The process of rockburst induced by spalling damage in deep hard-rock tunnels is reproduced, and the mechanism by which spalling damage on induces rockburst is revealed. In addition, the evolution process and failure characteristics of rockburst induced by spalling damage are analysed. The experimental results indicated that the red sandstone has a moderate rockburst tendency, and its rockburst process can be divided into four periods: the calm period, the small grain ejection & spalling damage period, the slab buckling & fragment ejection period and the violent ejection period. The mechanism of spalling damage on inducing rockburst is mainly embodied in two aspects: promoting large buckling deformations (providing energy for rockburst) and to weakening the strength of the rock mass (creating conditions for the suddenly release of energy). The effect of lateral stress on spalling damage and rockburst is more obvious than that of axial stress, and the severity of rockburst can be significantly reduced by increasing the lateral stress. The diameter of the hole has a strength size effect on the sidewall damage, producing a certain inhibitory effect on the spalling damage and rockburst. Smaller lateral stress corresponds with greater depths of the V-shaped notch and much smaller width-to-length ratios in the rock fragments.
机译:剥落和岩爆是深部硬岩隧道中的两种常见破坏模式,它们具有很强的相关性。本文研究了剥落引起的岩爆过程。测量了红砂岩的单轴抗压强度和岩爆趋势。设置了四个不同的初始应力条件,并通过真三轴测试系统测试了带有预制孔的立方红砂岩样品。在实验过程中,孔侧壁的故障由微相机实时监控和记录。再现了深部硬岩隧道中剥落破坏引起的岩爆过程,揭示了剥落破坏引起岩爆的机理。此外,分析了剥落破坏引起的岩爆的演化过程和破坏特征。实验结果表明,红砂岩具有一定的岩爆趋势,其岩爆过程可分为平静期,小颗粒喷出剥落破坏期,板坯屈曲和碎片喷出时期以及剧烈的喷出时期四个阶段。 。诱发岩爆的散裂破坏机理主要体现在两个方面:促进大的屈曲变形(为岩爆提供能量)和减弱岩体的强度(为突然释放能量创造条件)。横向应力对剥落破坏和岩爆的影响比轴向应力更为明显,并且通过增加横向应力可以显着降低岩爆的严重性。孔的直径对侧壁损伤具有强度大小影响,对剥落损伤和岩爆产生一定的抑制作用。较小的侧向应力对应于V形槽口的深度较大,且岩石碎片中的宽长比较小。

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