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An investigation into efficient drainage layouts for the stabilization of tunnel faces in homogeneous ground

机译:均质地层中稳定巷道面的有效排水布置研究

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This paper investigates the effectiveness of various advance drainage schemes with respect to face stability. The latter is analysed through limit equilibrium computations taking account of the modified seepage flow conditions prevailing in the ground after the implementation of drainage measures. The seepage forces are determined numerically through steady-state, three-dimensional seepage flow analysis which takes account of the characteristics of a given drainage scheme. A suite of computations was carried out to quantify the effects of the geometric parameters for the drainage layout, i.e. the number, length, spacing and location of drainage boreholes or the diameter and location of the pilot tunnel used for drainage. The computational results provide useful indications about optimum drainage arrangement with regard to face stability. A dimensionless formulation of the required support pressure (or the required cohesion of the ground, respectively) is developed in order to produce dimensionless design nomograms, which can provide a quick assessment of face stability in cases involving partial or complete pore pressure relief in advance of excavation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文研究了各种先进排水方案在面部稳定性方面的有效性。后者通过极限平衡计算进行了分析,并考虑到实施排水措施后地面中普遍存在的修正渗流条件。渗流力是通过稳态三维渗流分析通过数值确定的,该分析考虑了给定排水方案的特征。进行了一系列计算以量化排水布局的几何参数的影响,即排水孔的数量,长度,间距和位置,或用于排水的引水道的直径和位置。计算结果为有关排水面稳定性的最佳排水安排提供了有用的指示。为了产生无因次的设计诺模图,开发了无因次支持压力(或分别要求的地面凝聚力)的无量纲公式,该公式可以在评估局部或完全孔隙压力释放之前,快速评估面部稳定性。挖掘。 (C)2016 Elsevier Ltd.保留所有权利。

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