地质强度指标
岩体分类
各向异性
接头(建筑物)
地质学
凝聚力(化学)
岩土工程
钻孔
霍克-布朗破坏准则
压力(语言学)
主应力
岩石力学
理论(学习稳定性)
机械
几何学
结构工程
数学
物理
工程类
岩石学
计算机科学
语言学
哲学
量子力学
剪切(地质)
机器学习
作者
Xin Chen,Qiang Yang,Kang Qiu,Jili Feng
摘要
Abstract In this paper, an anisotropic strength criterion is established for jointed rock masses. An orientation distribution function (ODF) of joint connectivity, is introduced to characterize the anisotropic strength of jointed rock masses related to directional distributed joint sets. Coulomb failure condition is formulated for each plane of jointed rock masses by joint connectivity, where the friction coefficient and cohesion of the jointed rock mass are related to those of the intact rock and joint and become orientation dependent. When approximating joint connectivity by its second‐order fabric tensor, an anisotropic strength criterion is derived through an approximate analytical solution to the critical plane problem. To demonstrate the effects of joint distribution on the anisotropic strength of jointed rock masses, the failure envelopes are worked out for different relative orientations of material anisotropy and principal stress axes. The anisotropic strength criterion is also applied to wellbore stability analyses. It is shown that a borehole drilled in the direction of the maximum principal in situ stress is not always the safest due to the anisotropic strength of the jointed rock mass. Copyright © 2007 John Wiley & Sons, Ltd.
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