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Statistical analysis of shear cracks on rock surfaces

机译:岩石表面剪切裂纹的统计分析

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A set of 3873 cracks on exposed granite rock surfaces are analyzed in order to investigate possible fracture mechanisms. The fracture patterns are compared with the Mohr-Coulomb and the Roscoe fracture models, which can be combined into a single fracture scheme. A third model for comparison is based on interacting `penny-shaped' micro cracks introduced by Healy et al. [Nature 439, 64 (2006)]. The former models predict a bimodal fracture angle distribution, with two narrow peaks separated by 60○-90○ symmetrically on both sides of the direction of the largest principal stress, while the latter predicts a single broader peak in the same direction with standard deviation in the range 15○-20○. The crack length distributions seem consistent with numerical simulation, whereas the fracture patterns are Euclidean rather than fractal. The statistical analyses indicate that none of the models fully describe the fracture patterns. It seems that natural shear fractures easily become a complex combination of different fracture mechanisms.
机译:为了研究可能的断裂机理,对裸露的花岗岩岩石表面上的一组3873个裂纹进行了分析。将断裂模式与Mohr-Coulomb和Roscoe断裂模型进行比较,可以将这些断裂模型组合为一个断裂方案。第三种比较模型是基于Healy等人介绍的相互作用的“竹节状”微裂纹。 [Nature 439,64(2006)]。前者模型预测双峰断裂角分布,两个狭窄的峰在最大主应力方向的两侧对称地以60○-90○隔开,而后者则预测在同一方向上有一个较宽的峰,其标准偏差为范围15○-20○。裂纹长度分布似乎与数值模拟一致,而断裂模式是欧几里得而不是分形。统计分析表明,没有一个模型可以完全描述裂缝模式。似乎自然剪切裂缝很容易成为不同断裂机制的复杂组合。

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