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Numerical investigation of arching mechanism to underground excavation in jointed rock mass

机译:节理岩体地下开挖拱形机理的数值研究

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In this paper, the discontinuous deformation analysis (DDA) is applied to numerically investigate the formation of pressure arch and the stabilization mechanism of rock bolts for underground excavation in laminated rock mass. A global pressure arch with elevated stress is observed sustaining the weight of the overburden and providing the natural shield over the opening. Below the pressure arch is a loosened zone, where a group of local voussoir beam arches are formed to transfer the weight of each layer to the abutments. Detailed parametric studies regarding the in-situ stress ratio, joint friction angle, overburden depth and dip angle of strata are conducted and their influences on the formation of global pressure arch and local voussoir beam arches are identified and discussed. Based on the observed phenomena, the corresponding reinforcement scheme is proposed and the effectiveness and stabilization mechanism are examined. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文采用非连续变形分析(DDA)数值研究了层状岩体中地下开挖的压力拱的形成及锚杆的稳定机理。观察到应力升高的整体压力拱形支撑了覆盖层的重量,并在开口处提供了天然的保护层。在压力拱的下方是一个松动的区域,在该区域形成了一组局部的Voussoir梁拱,以将每层的重量转移到基台上。进行了关于地层应力比,接头摩擦角,上覆深度和倾角的详细参数研究,并确定和讨论了它们对整体压力拱和局部拱形拱的形成的影响。根据观察到的现象,提出了相应的加固方案,并研究了其有效性和稳定机理。 (C)2015 Elsevier Ltd.保留所有权利。

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