首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Fault gouge evolution and its dependence on normal stress and rock strength—Results of discrete element simulations: Gouge zone micromechanics
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Fault gouge evolution and its dependence on normal stress and rock strength—Results of discrete element simulations: Gouge zone micromechanics

机译:故障挖沟演变及其对正常应力和岩石强度的依赖 - 离散元模拟的结果:凿区微机械

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摘要

We simulate the breakdown of fault blocks using the Distinct Element Method (DEM) in two dimensions in order to study the frictional strength, mechanical behavior, and stress and strain state of evolving fault gouge and their dependence on normal stress σ n and uniaxial compressive strength σ ucs . The fault blocks were generated by adding breakable elastic bonds between adjacent circular particles to obtain a given σ ucs in a range from 100 to 260 MPa and deformed in a direct shear configuration over a range of σ n from 10 to 100 MPa. The simulated shear zones experienced two growth stages: fast and slow. During the fast growth stage, the shear zones attain a peak friction value within the first 2% shear strain, which is enhanced in low-σ n and high-σ ucs experiments. The residual sliding friction decreases nonlinearly with increasing ratio of σ n/σ ucs . The variation in friction is related to volume strain and localized deformation, both of which are dependent on strain, σ n, σ ucs , and associated variations in gouge properties. The complex correlations reflect the complexity and diversity of micromechanical processes in response to changing physical and structural properties of fault gouge as it evolves, with implications for fault behavior through time and space.
机译:我们使用两维的不同元素方法(DEM)模拟故障块的击穿,以研究演化故障凿孔的摩擦强度,力学行为和应变状态及其对正常应力σn和单轴抗压强度的依赖性ΣUCS。通过在相邻的圆形颗粒之间添加可破坏的弹性键来产生故障块,以获得100至260MPa的给定ΣUC,并且在从10至100MPa的范围内以σn的直接剪切配置变形。模拟剪切区经历了两个生长阶段:快速缓慢。在快速生长阶段期间,剪切区域在前2%剪切菌株内获得峰值摩擦值,其在低ΣN和高ΣUCS实验中增强。剩余滑动摩擦随着σN/ΣUC的越来越低,非线性降低。摩擦的变化与体积应变和局部变形有关,两者都取决于应变,σn,σucs和粗糙度特性的相关变化。复杂的相关性反映了微机械过程的复杂性和多样性,以响应变化故障凿孔的物理和结构特性,因为它的发展,通过时间和空间对故障行为的影响。

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