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Power-law relationship between joint spacing and bed thickness in sedimentary rocks and implications for layered rock mechanics

机译:沉积岩中联合间距和床厚度与分层岩石力学影响的幂律关系

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Fracture spacing (s) distribution and its dependence on bed thickness (t) are investigated for opening-mode joints in sandstone interlayered with shale in the Sainte-Anne des Monts area (the Gaspe Peninsula), Quebec, Canada. The s values of cross joints, which extend across intervals between long parallel systematic joints and abut these joints at about 90 degrees angles, are consistently larger than those of systematic joints by a mean factor of 1.81. The s-t relationship follows a power law: s = Mt(1-1/k), where m equals half the ratio of layer tensile strength to interface shear stress, and k is the Weibull modulus. The m value is significantly larger for cross joints than systematic joints, indicating that the interfacial shear stress was direction-dependent during the deformation. The Weibull modulus of sandstone was larger during the formation of systematic joints than that of cross joints by a factor of similar to 1.2, indicating that the number and size of flaws in a unit of volume of the sandstone increased during progressive deformation. Furthermore, the compilation of s-t data from the literature yields: m = 2.53 +/- 2.12 and k = 3.09 +/- 1.24 for sandstones, and m = 3.53 +/- 3.11 and k = 3.54 +/- 1.33 for carbonates. The analysis also raises doubt about the existence of real joint saturation in sedimentary rocks.
机译:在加拿大Sainte-Anne des Monts地区(Gaspe Peninsula),加拿大魁北克州砂岩中的砂岩中夹层的开放式关节,研究了骨折间距(t)的折叠间距及其对床厚度(t)的依赖。横截面的横截面的S值在长并联系统接头之间的间隔延伸并在约90度角度抵靠这些接头,始终大于系统关节的平均因子为1.81。 S-T关系遵循电力法:S = Mt(1-1 / k),其中M等于层拉伸强度与界面剪切应力的一半,K是Weibull模量。与系统关节的交叉关节M值显着较大,表明界面剪切应力在变形期间依赖于方向。在形成系统关节的形成过程中砂岩的Weibull模量比交叉关节的形成相似的一个与1.2相似,表明在逐渐变形期间砂岩单元体积单位的缺陷的数量和尺寸增加。此外,Singstones的文献产量的S-T数据的编制来自文献产量:m = 2.53 +/- 2.12和k = 3.09 +/- 1.24,用于碳酸盐的m = 3.53 +/- 3.11和k = 3.54 +/- 1.33。分析还提高了沉积岩中真正关节饱和度的怀疑。

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