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Cavity Expansion in Rock Masses Obeying the 'Hoek-Brown' Failure Criterion

机译:岩体膨胀岩体遵守“Hoek-Brown”故障标准

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摘要

An unified approach is presented for the analysis of the expansion of both cylindrical and spherical cavities in an infinite elastic-perfectly plastic "Hoek-Brown" (H-B) material. The H-B failure criterion expressed in scaled form is adopted with a plastic flow rule characterized by a constant dilatancy angle similar to. Closed form expressions are given for the extent of the plastic region and the related stress. Solutions of the displacement field in the plastic region are provided based on both small-strain and large-strain theories. An original relationship between the cavity pressure and its expansion is derived. The developed closed-form solutions are validated employing the finite element method. For comparison purposes, an approximate solution is presented by neglecting the elastic strains in the plastic region which reveals that the assumption of no elastic strains does not influence the results for strong rocks in contrast with weak rocks. For practical purposes, design charts are provided allowing easy and accurate estimates of the limit pressure for cavity expansion in rock masses. The cavity expansion solution is finally validated against results obtained using the Finite Element modelling.
机译:提出了一种统一的方法,用于分析无限弹性完美的塑料“Hoek-棕”(H-B)材料中的圆柱形和球形腔的膨胀。以缩放形式表示的H-B故障标准采用塑料流量规则,其特征在于相似的恒定膨胀角。为塑料区域和相关应力提供闭合形式表达。基于小型应变和大应变理论提供塑料区域中的位移场的溶液。源极压和其扩展之间的原始关系。验证了开发的闭合溶液采用有限元方法。为了比较目的,通过忽略塑料区域中的弹性菌株来提出近似解,揭示没有弹性菌株的假设不会影响强岩的结果与弱岩石相比。出于实际目的,提供了设计图表,允许简单准确地估计岩体中腔扩张的极限压力。最终验证腔膨胀溶液,以防止使用有限元建模获得的结果。

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