Relationship between Tangential Cohesion and Friction Angle Implied in the Generalized Hoek-Brown Failure Criterion

Youn-Kyou Lee
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引用次数: 2

Abstract

The generalized Hoek-Brown (H-B) function provides a unique failure condition for a jointed rock mass, in which the strength parameters of rock mass are deduced from the intact values by use of the GSI value. Since it is actually the only failure criterion which accounts for the rock mass conditions in a systematic manner, the generalized H-B criterion finds many applications to the various rock engineering projects. Its nonlinear character, however, limits more active usage of this criterion. Accordingly, many attempts have been made to understand the generalized H-B condition in the framework of the M-C function. This study presents the closed-form expression relating the tangential cohesion to the tangential friction angle, which is derived by the non-dimensional stress transformation of the generalized H-B criterion. By use of the derived equation, it is investigated how the relationship between the tangential cohesion and friction angle of the generalized H-B criterion varies with the quality of rock masses. When only the variation of GSI value is considered, it is found that the tangential friction angle decreases with the increase of GSI, while the tangential cohesion increases with GSI value.
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广义Hoek-Brown破坏准则中切向黏聚力与摩擦角的关系
广义Hoek-Brown (H-B)函数为节理岩体提供了一种独特的破坏条件,利用GSI值从完整值推导出岩体的强度参数。由于广义H-B准则实际上是唯一能系统地解释岩体状况的破坏准则,因此它在各种岩石工程中有着广泛的应用。然而,它的非线性特性限制了该判据更积极的应用。因此,许多人尝试在M-C函数的框架下理解广义H-B条件。本文利用广义H-B准则的无因次应力变换,导出了切向黏聚力与切向摩擦角的封闭表达式。利用导出的方程,研究了广义H-B准则的切向黏聚力与摩擦角随岩体质量的变化关系。当仅考虑GSI值的变化时,发现切向摩擦角随GSI值的增加而减小,而切向黏聚力随GSI值的增加而增大。
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