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Analysis of EDZ Development of Columnar Jointed Rock Mass in the Baihetan Diversion Tunnel

机译:白鹤滩导流洞柱状节理岩体EDZ发育分析。

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Due to the time dependency of the crack propagation, columnar jointed rock masses exhibit marked time-dependent behaviour. In this study, in situ measurements, scanning electron microscope (SEM), back-analysis method and numerical simulations are presented to study the time-dependent development of the excavation damaged zone (EDZ) around underground diversion tunnels in a columnar jointed rock mass. Through in situ measurements of crack propagation and EDZ development, their extent is seen to have increased over time, despite the fact that the advancing face has passed. Similar to creep behaviour, the time-dependent EDZ development curve also consists of three stages: a deceleration stage, a stabilization stage, and an acceleration stage. A corresponding constitutive model of columnar jointed rock mass considering time-dependent behaviour is proposed. The time-dependent degradation coefficient of the roughness coefficient and residual friction angle in the Barton-Bandis strength criterion are taken into account. An intelligent back-analysis method is adopted to obtain the unknown time-dependent degradation coefficients for the proposed constitutive model. The numerical modelling results are in good agreement with the measured EDZ. Not only that, the failure pattern simulated by this time-dependent constitutive model is consistent with that observed in the scanning electron microscope (SEM) and in situ observation, indicating that this model could accurately simulate the failure pattern and time-dependent EDZ development of columnar joints. Moreover, the effects of the support system provided and the in situ stress on the time-dependent coefficients are studied. Finally, the long-term stability analysis of diversion tunnels excavated in columnar jointed rock masses is performed.
机译:由于裂纹扩展的时间依赖性,柱状节理岩体表现出明显的时间依赖性。在这项研究中,现场测量,扫描电子显微镜(SEM),反分析方法和数值模拟被提出来研究柱状节理岩体中地下导流隧道周围的开挖损伤区(EDZ)的时变发展。通过现场测量裂纹扩展和EDZ的发展,尽管前进的面已经过去,但它们的范围却随着时间的推移而增加。与蠕变行为类似,随时间变化的EDZ发展曲线也包括三个阶段:减速阶段,稳定阶段和加速阶段。提出了考虑时变特性的柱状节理岩体本构模型。考虑了Barton-Bandis强度准则中粗糙度系数和残余摩擦角随时间变化的退化系数。采用一种智能的反分析方法来获得本构模型的未知的时变退化系数。数值模拟结果与测得的EDZ非常吻合。不仅如此,这种基于时间的本构模型模拟的失效模式与在扫描电子显微镜(SEM)和原位观察中观察到的一致,表明该模型可以准确地模拟失效模式和随时间变化的EDZ发展。柱状关节。此外,还研究了所提供的支撑系统和原位应力对随时间变化的系数的影响。最后,对柱状节理岩体中的导流隧洞进行了长期稳定性分析。

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