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Study on the tunneling response of TBM in stressed granite rock mass in Yinhan Water Conveyance tunnel

机译:云山水输送隧洞强调花岗岩岩体TBM隧道响应研究

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摘要

The initial stress of the surrounding rock mass will be redistributed during TBM tunneling in a deep tunnel. This process may induce brittle failure of the surrounding rock mass, which has a great impact on TBM construction. The southern section of the Yinhan Water Conveyance Tunnel is mainly composed of massive to intact granite, with a maximum overburden depth of nearly 2000 m. The paper discussed in detail the relationship between various brittle failure degrees at the typical tunnel faces and TBM performance. The typical patterns, such as undamaged, slabbing, and strain rockburst at the tunnel face, and the corresponding characteristics of the TBM performance parameters were revealed. As the severity of damage increases, the rock mass boreability is improved, the cutterhead thrust is reduced, and the penetration increases, but there is an upper limit. It is noteworthy that the field penetration index (FPI) fluctuation expressed by the coefficient of variation (CV) varies significantly in different stress states. Based on the excavation response of TBM, a Rockburst Warning Index (RWI) was proposed to assess the brittle failure degree of the excavated rock mass in real-time. The results of the study can provide some insights into the prediction of TBM performance and the early warning of rockburst in deep-buried hard rock grounds.
机译:在深隧道中的TBM隧道期间将重新分配周围岩体的初始应力。该过程可能会诱导周围岩体的脆性失效,这对TBM结构产生了很大影响。云山水输送隧道的南部主要由大量到完整的花岗岩组成,最大的覆盖层深度近2000米。本文详细讨论了典型隧道面和TBM性能的各种脆性衰竭程度之间的关系。透露了典型图案,例如在隧道面上的未被损坏,坡边和应变岩浆,以及TBM性能参数的相应特性。随着损伤的严重程度增加,岩体大规模杆状动性得到改善,切割口推力降低,渗透率增加,但存在上限。值得注意的是,由变异系数(CV)表示的场渗透指数(FPI)波动在不同的应力状态下显着变化。基于TBM的挖掘响应,提出了一种实时挖掘岩体脆性失效程度的摇滚爆发警示指数(RWI)。该研究的结果可以在深埋硬岩地上预测TBM性能和岩爆预测的洞察结果。

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