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Anti-pull mechanisms and weak interlayer parameter sensitivity analysis of tunnel-type anchorages in soft rock with underlying weak interlayers

机译:软岩中隧道型锚固与弱夹层弱层间锚固的抗拉伸机制及弱层间参数敏感性分析

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摘要

Geologic structures such as weak interlayers and joints adversely affect the stability of tunnel-type anchorages (TTAs). The load transfer and rock mass deformation characteristics of TTAs with underlying weak interlayers in soft rock strata are analysed in this work by means of a field-based reduced scale model test. Using FLAC3D, we investigate the effects of weak interlayer parameters (i.e. dip angle, minimum distance between weak interlayers and plug body, thickness, elasticity modulus, cohesion and internal friction angle) on the deformation characteristics and failure modes of TTAs. The sensitivity of the weak interlayer parameters to the deformation of rock masses is ranked according to the calculation of sensitivity factor. Results from this study show that four stages of rock mass deformation are observed. A strong interaction is observed between the postmedian plug body and the surrounding rock. The surrounding rock at the rear end of the plug body is the main bearing part of the TTA during loading. The dip angle of weak interlayers is the most sensitive parameter that affects the deformation of surrounding rocks, and it is also closely related to the ultimate failure mode of TTAs in soft rock with underlying weak interlayers. If reasonable design is taken to properly handle the relationship between the plug body and the weak interlayer, the TTA will be able to remain stable.
机译:弱层间和关节等地质结构对隧道型锚固(TTA)的稳定性产生不利影响。通过基于现场的减正模型测试,在这项工作中分析了具有软岩地层底层弱中间层的TTA的载荷传递和岩石质量变形特性。使用FLAC3D,我们研究了弱层间参数的影响(即倾角,弱夹层和插塞体之间的最小距离,厚度,弹性模量,内聚力和内部摩擦角)对TTA的变形特性和故障模式。弱层间参数对岩体变形的敏感性根据灵敏度因子的计算排序。本研究结果表明,观察到岩石质量变形的四个阶段。在后网塞体和周围岩石之间观察到强烈的相互作用。塞体后端的周围岩石是加载过程中TTA的主轴承部分。弱层间的倾角是影响周围岩石变形的最敏感的参数,它也与软岩中TTA的最终失效模式密切相关,弱卵形中间层。如果采用合理的设计来正确处理塞体和弱层间之间的关系,则TTA将能够保持稳定。

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