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首页> 外文期刊>Tunnelling and underground space technology >A limit equilibrium model for the reinforced face stability analysis of a shallow tunnel in cohesive-frictional soils
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A limit equilibrium model for the reinforced face stability analysis of a shallow tunnel in cohesive-frictional soils

机译:粘性摩擦土壤中浅隧道增强面稳定性分析的极限平衡模型

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Although a variety of theoretical models have been developed to assess the stability of reinforced tunnel faces, the failure mechanisms in these models are inconsistent with the experimental results. This study establishes a 3D model for the stability analysis of a reinforced tunnel face based on the limit equilibrium method and strength reduction technique. This model considers the horizontal soil arching effect and has a reasonable failure mechanism that is composed of two parts: a truncated elliptical cylinder (upper part) and a wedge bound by a logspiral-shaped slip surface (lower part). The tension failure of the bolts and shear failure of the grout-soil interface are considered in the calculation of the supporting force of the face bolts. For the sake of verification, the results are compared with those from numerical method and typical limit equilibrium methods. The comparisons show that the results obtained by the proposed model agree well with the numerical simulation results, and the average relative difference and absolute difference are 4.89% and 0.10, respectively.Moreover, when the bolt length is shorter than the optimum length, the safety factor and failure mechanism increase with increasing length; when the bolt length exceeds the optimum length, the safety factor remains constant, while the failure mechanism decreases and then remains unchanged. In addition, the applicability of the proposed model for a circular tunnel face is demonstrated by comparing the results of the proposed model with those of previous studies. At the end of this work, design nomograms are presented to allow the proposed model to be used by engineers.
机译:尽管已经开发出各种理论模型来评估增强隧道面的稳定性,但这些模型中的失效机制与实验结果不一致。本研究建立了基于极限平衡法和强度缩减技术的增强隧道面稳定性分析的3D模型。该模型考虑了水平的土壤拱形效果,并且具有合理的故障机制,其由两部分组成:截短的椭圆缸(上部)和由Logspiral形滑动表面(下部)结合的楔形件。在计算面螺栓的支撑力的计算中,考虑了灌浆土界面的螺栓和剪切失效的张力失效。为了验证,将结果与来自数值方法和典型极限平衡方法的结果进行比较。比较表明,通过拟议模型获得的结果与数值模拟结果吻合良好,并且平均相对差异和绝对差异分别为4.89%和0.10。螺栓长度短于最佳长度,安全性因子和故障机制随着长度的增加而增加;当螺栓长度超过最佳长度时,安全系数保持恒定,而故障机构减小,然后保持不变。此外,通过将所提出的模型与先前研究的研究结果进行比较,通过对圆形隧道面的提出模型的适用性证明。在这项工作结束时,提出了设计拓图以允许建议的模型由工程师使用。

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