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Discussion: Stability analysis of earth pressure balance shield tunnel face considering soil arching

机译:讨论:考虑土壤拱形土压力平衡盾构隧道面的稳定性分析

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Face stability in tunnels excavated under pressurised shields in compound strata is a major issue in tunnelling projects. An analytical method is proposed to predict the horizontal earth pressure at the tunnel face of an earth pressure balance shield in compound strata using a silo-ring model. Three-dimensional arching effects and the friction between cutter plates are considered in the method. The fourth-order Runge-Kutta method is used to evaluate the horizontal earth pressure of loosening soil in the quarter-ring body on the cutter plates. The method can be used to evaluate the horizontal soil pressure at a tunnel face in compound strata and to predict the most vulnerable area during excavation. A parameter study was conducted to assess the influence of soil cohesion and friction angle on the horizontal soil pressure. It was found that the friction angle has more apparent influence than cohesion. A comparison of results indicated that the proposed method is in generally good agreement with field-observed behaviour and the results calculated using other approaches.
机译:在复合地层的加压屏蔽下挖掘出隧道中的面部稳定性是隧道工程中的一个主要问题。提出了一种分析方法,以预测使用筒仓型模型在复合地层中的接地压力平衡屏蔽的隧道面的水平接地压力。在该方法中考虑了三维拱形效应和刀具板之间的摩擦。第四阶跑架方法用于评估刀具板上四分之一环体中松动土的水平接地压力。该方法可用于评估复合地层中隧道面的水平土压力,并在挖掘过程中预测最脆弱的区域。进行了参数研究,以评估土壤内聚力和摩擦角对水平土压力的影响。发现摩擦角度的影响比内聚力更明显。结果的比较表明,该方法通常与现场观察的行为吻合,并使用其他方法计算的结果。

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