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首页> 外文期刊>Rock Mechanics and Rock Engineering >Implementation of an Empirical Joint Constitutive Model into Finite-Discrete Element Analysis of the Geomechanical Behaviour of Fractured Rocks
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Implementation of an Empirical Joint Constitutive Model into Finite-Discrete Element Analysis of the Geomechanical Behaviour of Fractured Rocks

机译:将经验关节本构模型实现成裂缝岩石地质力学行为的有限离散元分析

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摘要

An empirical joint constitutive model (JCM) that captures the rough wall interaction behaviour of individual fractures associated with roughness characteristics observed in laboratory experiments is combined with the solid mechanical model of the finite-discrete element method (FEMDEM). The combined JCM-FEMDEM formulation gives realistic fracture behaviour with respect to shear strength, normal closure, and shear dilatancy and includes the recognition of fracture length influence as seen in experiments. The validity of the numerical model is demonstrated by a comparison with the experimentally established empirical solutions. A 2D plane strain geomechanical simulation is conducted using an outcrop-based naturally fractured rock model with far-field stresses loaded in two consecutive phases, i.e. take-up of isotropic stresses and imposition of two deviatoric stress conditions. The modelled behaviour of natural fractures in response to various stress conditions illustrates a range of realistic behaviour including closure, opening, shearing, dilatancy, and new crack propagation. With the increase in stress ratio, significant deformation enhancement occurs in the vicinity of fracture tips, intersections, and bends, where large apertures can be generated. The JCM-FEMDEM model is also compared with conventional approaches that neglect the scale dependency of joint properties or the roughness-induced additional frictional resistance. The results of this paper have important implications for understanding the geomechanical behaviour of fractured rocks in various engineering activities.
机译:捕获与实验室实验中观察到的粗糙度特性相关的个体骨折粗糙壁相互作用行为的经验联合组成型模型(JCM)与有限分元法(Femdem)的固体机械模型相结合。合并的JCM-Femdem配方具有剪切强度,正常闭合和剪切抗扩张的现实骨折行为,并且包括在实验中看到的骨折长度影响的识别。通过与实验建立的经验解决方案的比较来证明了数值模型的有效性。使用基于露出的天然裂缝的岩石模型进行2D平面应变地质力学模拟,其中两个连续阶段具有远场应力,即各向同性应力的吸收和施加两种偏离抗胁迫条件。响应各种应力条件的自然骨折的建模行为示出了一系列现实行为,包括封闭,开口,剪切,膨胀和新的裂缝繁殖。随着应力比的增加,在断裂尖端,交叉点和弯曲附近发生显着的变形增强,其中可以产生大孔径。 JCM-Femdem模型也与忽略关节性能或粗糙度诱导的额外摩擦阻的常规方法进行比较。本文的结果对了解各种工程活动中骨折岩石的地质力学行为具有重要意义。

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