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Mechanical model for operational loads prediction on shield cutter head during excavation

机译:开挖过程中盾构刀头工作负荷预测的力学模型

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This paper presents a mechanical model to predict the operational loads acting on the cutter head of shield tunnel machine during excavation based on contact mechanics theory, in which the cutter head is considered as a rigid cylinder punch and the soil to be excavated is simplified as an elastic half-space. Then the estimation formulae of the operational loads are obtained and the influence of some key factors including the geological parameters, the radius of the cutter head and especially the excavation penetration can be analyzed based on the proposed model. The results show that the operational loads increase linearly when the machine works with a deeper excavation penetration. The prediction presented in this paper agrees with experimental results given by other researcher. It also can be seen that the geological condition affects both the quantity and the changing rate of loads with the excavation penetration. The proposed model may be a possible and feasible way to predict loads of shield tunnel machine.
机译:本文基于接触力学理论,提出了一种力学模型,用于预测盾构隧道掘进机开挖时作用于工作头上的工作载荷,该模型将刀头视为刚性圆柱冲头,将要开挖的土壤简化为开挖土。弹性半空间。在此基础上,得出了运行荷载的估算公式,并分析了地质参数,刀盘半径,尤其是开挖深度等关键因素的影响。结果表明,当机器在较深的开挖深度下工作时,运行负荷呈线性增加。本文提出的预测与其他研究人员给出的实验结果一致。还可以看出,随着开挖的深入,地质条件既影响荷载的数量,也影响荷载的变化率。所提出的模型可能是预测盾构隧道掘进机负荷的一种可行可行的方法。

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