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Time-Dependent Damage Investigation of Rock Mass in an In Situ Experimental Tunnel

机译:现场实验隧道岩体的时变损伤研究

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摘要

In underground tunnels or caverns, time-dependent deformation or failure of rock mass, such as extending cracks, gradual rock falls, etc., are a costly irritant and a major safety concern if the time-dependent damage of surrounding rock is serious. To understand the damage evolution of rock mass in underground engineering, an in situ experimental testing was carried out in a large belowground tunnel with a scale of 28.5 m in width, 21 m in height and 352 m in length. The time-dependent damage of rock mass was detected in succession by an ultrasonic wave test after excavation. The testing results showed that the time-dependent damage of rock mass could last a long time, i.e., nearly 30 days. Regression analysis of damage factors defined by wave velocity, resulted in the time-dependent evolutional damage equation of rock mass, which corresponded with logarithmic format. A damage viscoelastic-plastic model was developed to describe the exposed time-dependent deterioration of rock mass by field test, such as convergence of time-dependent damage, deterioration of elastic modules and logarithmic format of damage factor. Furthermore, the remedial measures for damaged surrounding rock were discussed based on the measured results and the conception of damage compensation, which provides new clues for underground engineering design.
机译:在地下隧道或洞穴中,岩石的随时间变化的变形或破坏(例如扩展的裂缝,逐渐的岩石坠落等)是一种昂贵的刺激物,如果围岩的随时间变化的破坏严重,则是主要的安全隐患。为了了解地下工程中岩体的破坏演化,我们在一条宽28.5 m,高21 m,长352 m的大型地下隧道中进行了现场试验。开挖后通过超声波测试连续检测到岩体随时间的损坏。测试结果表明,岩体随时间的破坏可能持续很长时间,即近30天。通过对波速定义的破坏因子进行回归分析,得到了随时间变化的岩体演化损伤方程,与对数格式相对应。建立了损伤粘弹塑性模型,通过现场试验描述了岩体暴露的时间相关的退化,例如时间相关的破坏的收敛,弹性模量的退化和破坏因子的对数格式。此外,根据实测结果和损伤补偿的概念,对受损围岩的补救措施进行了探讨,为地下工程设计提供了新的思路。

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