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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Fracture patterns in nonplane strain boudinage - Insights from 3-D discrete element models
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Fracture patterns in nonplane strain boudinage - Insights from 3-D discrete element models

机译:非平面应变模架中的断裂模式-3-D离散元模型的见解

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We use 3-D Discrete Element Method simulations to model the evolution of boudin structures in a layered material under nonplane strain conditions. As the models are shortened perpendicular to the layer orientation, they are extended at different rates in the two layer-parallel directions. The particular emphasis of the study is on the orientation of fractures between the boudin blocks. The results show that the fracture orientation distribution is closely connected to the ratio of the two layer-parallel extension rates. The anisotropy of the fracture orientation distribution increases systematically from no anisotropy at isotropic layer-parallel extension to a highly anisotropic distribution in case of uniaxial extension. We also observe an evolution of the anisotropy of fracture orientation distribution with increasing deformation in each individual model from a high-initial anisotropy towards a value characteristic for the ratio of the layer-parallel extension rates. The observations about the relation between the strain ratios and the fracture patterns do have the potential to serve as the basis for a new method to analyze strains in naturally boudinaged rocks. Key Points 3D DEM modelling of boudinage Fracture patterns dependent on in-layer strain ratio Fracture orientations show characteristic anisotropy
机译:我们使用3-D离散元素方法仿真来模拟在非平面应变条件下层状材料中Boudin结构的演变。随着模型在垂直于层方向的方向上缩短,它们在两个平行层方向上以不同的速率扩展。该研究的特别重点在于布丁块之间的骨折方向。结果表明,断裂取向分布与两层平行延伸率之比紧密相关。裂缝取向分布的各向异性从各向同性平行层延伸时的无各向异性到单轴延伸情况下的高各向异性分布,都有系统地增加。我们还观察到了裂缝取向分布的各向异性随着每个单独模型中变形的增加而从高初始各向异性向层平行延伸率之比的特征值演变。关于应变比与断裂模式之间关系的观察确实有可能作为一种新方法来分析天然结合岩石中的应变。重点3D DEM的boudenage建模取决于层内应变比的断裂模式断裂方向显示出特征各向异性

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