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首页> 外文期刊>Tunnelling and underground space technology >Three-dimensional upper bound limit analysis of supported cavity roof with arbitrary profile in Hoek-Brown rock mass
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Three-dimensional upper bound limit analysis of supported cavity roof with arbitrary profile in Hoek-Brown rock mass

机译:Hoek-Brown岩体中任意剖面支撑空腔屋盖的三维上限分析

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摘要

Reliably predicting and estimating roof collapse in underground cavities such as mine goafs and power caverns is a serious concern in mining and geotechnical engineering fields. An analytical expression for a three-dimensional (3D) failure mode of a generic-shaped cavity crown is derived according to the upper bound theorem via limit analysis, where the Hoek-Brown yield criterion represents rock mass strength. The proposed method is validated by comparison against the extant research; the comparison also suggests that the roof profile plays a crucial role in cavity stability. Specific example is given to ellipsoidal cavity and the stability graph with respect to roof profile and cavity span is obtained and discussed. The effects of numerous factors on potential collapse are investigated based on the numerical calculation results. These results may provide workable guidelines for the optimization of roof shapes and support designs in minimizing rock detachment above cavity roofs in practice.
机译:在采矿和岩土工程领域,可靠地预测和估计地下空洞(例如采空区和电洞)的屋顶塌陷是一个严重的问题。通过上限分析,根据上限定理,得出了通用型腔顶的三维(3D)破坏模式的解析表达式,其中Hoek-Brown屈服准则表示岩体强度。通过与现有研究进行比较,验证了该方法的有效性。比较还表明,屋顶轮廓在型腔稳定性中起着至关重要的作用。给出了椭圆形空腔的具体例子,并获得并讨论了关于屋顶轮廓和空腔跨度的稳定性图。基于数值计算结果,研究了多种因素对潜在坍塌的影响。这些结果可能为优化屋顶形状和支持设计提供实际可行的指导,以在实践中最大程度地减少空腔屋顶上方的岩石分离。

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