首页> 外文期刊>Journal Of The South African Institute Of Mining & Metallurgy >The design of tunnel support in deep hard-rock mines under quasistatic conditions
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The design of tunnel support in deep hard-rock mines under quasistatic conditions

机译:Quasistatic条件下深岩矿井隧道支撑设计

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The induced elastic stresses in the sidewalls of gold-mining tunnels at a depth of 4000 m in the Witwatersrand exceed the peak compressive strength of even the best-quality quartzite rocks. Laboratory tests measuring post-yield stress versus strain response show that brittle fracture occurs, followed by a loss in strength associated with strain-softening behaviour. Numerical modelling based on an assumed Mohr-Coulomb criterion fitted to the test results shows that large ongoing deformations of the sidewall occur, leading to total tunnel failure without adequate support. A methodology is presented to enable a quick assessment, to be made of support requirements in terms of ground characteristic curves for numerically derived pressure versus displacement. From these curves, estimates can be made of the force levels for cable bolting and of the thickness and strength requirements for shotcrete linings. As an example of its application, the methodology is used in a comparison of the relative stability efficiencies of a square-shaped tunnel and a horizontal ellipse-shaped tunnel.
机译:在Witwatersrand中,金刚砂隧道侧壁侧壁中的诱导弹性应力超过了甚至最佳品质石英岩岩石的峰值抗压强度。测量屈服后应力与应变反应的实验室试验表明,发生脆性骨折,其次是与菌株软化行为相关的强度损失。基于假定的Mohr-Coulomb标准的数值建模,适用于测试结果表明,侧壁的大持续变形发生,导致总隧道故障而无需足够的支撑。提出了一种方法来实现快速评估,以在地面特征曲线方面由用于数值衍生压力与位移的地面特征曲线进行的支持要求。从这些曲线来看,估计可以由电缆螺栓的力水平和吸尘器衬里的厚度和强度要求制成。作为其应用的示例,该方法用于比较方形隧道和水平椭圆形隧道的相对稳定性效率的比较。

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