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Introducing an empirical model for prediction of disc cutter life for TBM application in jointed rocks: case study, Kerman water conveyance tunnel

机译:联合岩石中TBM应用预测椎间盘刀寿命的实证模型:案例研究,克尔曼水输送隧道

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摘要

Disc cutters wear and need to be replaced when using tunnel boring machines (TBMs) to excavate through rock, often becoming a high ticket item on the list of consumables in tunneling operation. The empirical models used for predicting cutter life are commonly based on the properties of intact rock, while the impact of rock mass characteristics on cutter wear is often ignored or not properly taken into account. Joints and discontinuities tend to decrease the strength of rock mass, as compared to intact rock. Joint properties can affect the interactions between the rock and the disc cutter in the boring process. In other words, the cutter wear and life in a jointed rock mass are different than the wear rate in intact rock. In this study, field data including the geomechanical parameters and observed cutter life in the Kerman water conveyance tunnel (KWCT) project was analyzed using multivariable regression to offer a new empirical prediction model for prediction of cutter life in the jointed rocks. The model presented in this study shows that cutter life is a function of the total fracturing factor and rock mass strength, representing rock mass properties and Cerchar abrasivity index as intact rock property. Furthermore, boring in jointed rock is easier than an intact rock, and as a result, the cutter life increases. The validation results show that this model can offer a more accurate prediction of the disc cutter life in tunneling projects involving jointed rock masses.
机译:圆盘切割器磨损,需要在使用隧道镗床(TBMS)通过岩石挖掘时更换,通常成为隧道操作耗材清单上的高票商品。用于预测刀具寿命的经验模型通常基于完整岩石的性质,而岩石质量特性对刀具磨损的影响通常会被忽略或未适当考虑到刀具磨损。与完整的岩石相比,关节和不连续性往往会降低岩体的强度。联合特性可以影响钻孔过程中岩石和盘式切割器之间的相互作用。换句话说,连接岩体中的刀具磨损和寿命与完整岩石中的磨损率不同。在本研究中,使用多变量回归分析了包括地质力学参数和观察到克尔曼水传送隧道(KWCT)项目中的刀具寿命的现场数据,以提供新的经验预测模型,以便在关节岩石中预测刀具寿命的预测。本研究中提出的模型表明,刀具寿命是总压裂因子和岩石质量强度的函数,表示岩体特性和CERCHAR磨料指数作为完整的岩石性能。此外,连接岩石中的镗孔比完整的岩石更容易,结果,刀具寿命增加。验证结果表明,该模型可以更准确地预测涉及关节岩体的隧道工程中的椎间盘刀寿命。

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