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Safety factor assessment of a tunnel face reinforced by horizontal dowels

机译:水平销钉加固的隧道工作面的安全系数评估

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摘要

The use of dowels as a reinforcement technique has been successfully applied to improve the tunnel face stability during excavation, for the sake of safety and for the construction speed. The conventional tunneling, e.g. the New Austrian Tunneling Method, promotes the use of such techniques in design for a maximum optimization of the tunnel support. In this work, the kinematic approach in combination with the strength reduction technique is employed to evaluate the safety factor of a reinforced tunnel face. The discretization technique is extended to generate the failure mechanism for a realistic tunnel face shape (non-circular shape). An interaction zone with finite thickness is used to model the interaction between the soils and the dowels. The width of the interaction zone introduces a new parameter in the optimization process. In order to validate the implemented method, the results are compared with those of numerical analysis, which shows that the developed approach is an efficient design tool for the safety factor assessment of a reinforced tunnel face. Several charts are provided for parametric analysis to discuss the influence of the bolt length, the bolt density and the soil shear strength. (C) 2017 Elsevier Ltd. All rights reserved.
机译:为了安全和施工速度的考虑,已经成功地将销钉用作加强技术来改善挖掘过程中的隧道工作面稳定性。常规隧道“新奥地利隧道法”促进了此类技术在设计中的使用,以最大程度地优化隧道支护。在这项工作中,采用运动学方法并结合强度折减技术来评估加固隧道工作面的安全系数。离散化技术得到扩展,以生成用于真实隧道面形状(非圆形)的破坏机制。具有有限厚度的相互作用区域用于模拟土壤和销钉之间的相互作用。交互区域的宽度在优化过程中引入了新参数。为了验证该方法的有效性,将结果与数值分析结果进行了比较,结果表明,该方法是一种有效的设计工具,可用于评估加固隧道工作面的安全系数。提供了一些图表用于参数分析,以讨论螺栓长度,螺栓密度和土壤抗剪强度的影响。 (C)2017 Elsevier Ltd.保留所有权利。

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