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Analysis and prediction of TBM performance in blocky rock conditions at the Loetschberg Base Tunnel

机译:勒施贝格隧道在块岩条件下的TBM性能分析与预测

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This paper focuses on the analysis of the TBM performance recorded during the excavation of the Lotschberg Base Tunnel. The southern part of the tunnel was excavated by two gripper TBMs, partly through blocky rock masses at great depth. The jointed nature of the blocky rock mass posed serious problems concerning the stability of the excavation face. A detailed analysis has been carried out to obtain a relationship between the rock mass conditions and the TBM performance, using the Field Penetration Index (FPI). In blocky rock conditions, the FPI is defined as the ratio between the applied thrust force and the actual penetration rate. A database of the TBM parameters and the geological/geotechnical conditions for 160 sections along the tunnel has been established. The analysis reveals a relationship between the FPI and two rock mass parameters: the volumetric joint count (J_v) and the intact rock uniaxial compres-sive strength (UCS). Through a multivariate regression analysis, a prediction model for FPI in blocky rock conditions (FPI_(blocky)) is then introduced. Finally, other TBM performance parameters such as the penetration rate, the net advance rate and the total advance rate are evaluated using FPI_(blocky).
机译:本文着重分析在Lotschberg基础隧道开挖期间记录的TBM性能。隧道的南部是由两个抓斗式TBM开挖的,部分是通过很深的块状岩体进行的。块状岩体的节理性质对开挖面的稳定性提出了严重的问题。使用场穿透指数(FPI)进行了详细的分析,以获得岩体条件与TBM性能之间的关系。在块状岩石条件下,FPI定义为施加的推力与实际穿透率之比。建立了沿隧道160段的TBM参数和地质/岩土条件的数据库。分析揭示了FPI与两个岩体参数之间的关系:体积节理数(J_v)和完整的岩石单轴抗压强度(UCS)。通过多元回归分析,介绍了块状岩石条件下的FPI预测模型(FPI_(blocky))。最后,使用FPI_(blocky)评估其他TBM性能参数,例如渗透率,净推进率和总推进率。

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