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Numerical determination of strength and deformability of fractured rock mass by FEM modeling

机译:有限元数值模拟确定裂隙岩体强度和变形性

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摘要

The strength and deformability of fractured rock masses are important factors in the design and construction of civil and mining structures built in or on rock masses. The finite element method (FEM) was applied to study the mechanical behavior of fractured rock masses. A damage-softening statistical constitutive model of intact rock was implemented in FEM code in order to model the strain-softening behavior of rock masses. The FEM model was verified against a theoretical solution and resulted in good agreement. The FEM model was then applied to investigate the progressive failure process, scale effect and anisotropic characteristics of uniaxial compressive strength (UCS), and the deformation modulus of fractured rock masses. The numerical results showed that the representative elementary volume (REV) for strength and deformation modulus is 12 m with an acceptable variation of 10%, and the complete stress-strain curves of models greater than REV size were very similar to each other. A linear relationship was also found between the UCS and the deformation modulus. This result seems to support the idea that a rock mass has a critical strain corresponding to the UCS, regardless of the deformation modulus, scale and direction.
机译:裂隙岩体的强度和可变形性是设计和建造在岩体内部或之上的土木和采矿结构的重要因素。应用有限元方法(FEM)研究了裂隙岩体的力学行为。为了模拟岩体的应变软化行为,在FEM代码中实现了完整岩石的破坏软化统计本构模型。相对于理论解验证了有限元模型,并取得了良好的一致性。然后应用有限元模型研究渐进破坏过程,单轴抗压强度(UCS)的尺度效应和各向异性特征以及裂隙岩体的变形模量。数值结果表明,强度和变形模量的代表性基本体积(REV)为12 m,可接受的变化为10%,大于REV尺寸的模型的完整应力-应变曲线非常相似。还发现UCS与变形模量之间存在线性关系。该结果似乎支持这样一种观点,即岩体具有与UCS相对应的临界应变,而与变形模量,尺度和方向无关。

著录项

  • 来源
    《Computers and Geotechnics》 |2015年第3期|20-31|共12页
  • 作者单位

    State Key Laboratory of Geomechanics and Geotechnical Engineering, Institute of Rock and Soil Mechanics, Chinese Academy of Sciences, 430071 Wuhan, PR China;

    State Key Laboratory of Geomechanics and Geotechnical Engineering, Institute of Rock and Soil Mechanics, Chinese Academy of Sciences, 430071 Wuhan, PR China,Research Center of Geotechnical and Structural Engineering, Shandong University, 250061 Jinan, PR China;

    State Key Laboratory of Geomechanics and Geotechnical Engineering, Institute of Rock and Soil Mechanics, Chinese Academy of Sciences, 430071 Wuhan, PR China;

    State Key Laboratory of Geomechanics and Geotechnical Engineering, Institute of Rock and Soil Mechanics, Chinese Academy of Sciences, 430071 Wuhan, PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Rock mass; Strength; Deformation modulus; Numerical; Representative elementary volume (REV);

    机译:岩体;强度;变形模量数值;代表基本体积(REV);

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