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Spatial characteristics of rock joint profile roughness and mechanical behavior of a randomly generated rock joint

机译:随机产生的岩体粗糙度粗糙度粗糙度和力学行为的空间特征

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摘要

Barton's formula is one of the most widely used equations for estimating the shear strength of rock joints. The Joint Roughness Coefficient (JRC) in the equation is a crucial parameter of the shear strength because it controls the roughness of the profile. To explore the spatial characteristics of the roughness of a rock joint profile, a total of 86 actual rock joint profiles were collected from published researches and digitalized. The Profile Height Variation (PHV) for each profile group was analyzed statistically. The standard deviation of the PHV was found to depend strongly on the JRC value. This correlation of the standard deviation of the PHV with the JRC can be used easily to estimate the JRC of a given joint profile. Owing to the above statistical features of the PHV, any random profile with a given JRC can be generated for further analysis. Therefore, Direct Shear (DS) tests were simulated for two joint profiles (a randomly generated profile with JRC = 19.6 and Barton's standard profile with JRC 18-20) using the Discrete Element Method (DEM). The simulation results revealed that both of the joint profiles have similar joint shear strengths, indicating that the randomly generated JRC profile can function as a good artificial profile in an engineering simulation. Finally, DEM simulation also indicated that the shear strength of rock joints originates from the roughness of the joints, and shearing-off of the joints occurs at a normal stress larger than 4 MPa.
机译:巴顿的公式是最广泛使用的方程之一,用于估计岩圈的剪切力量。等式中的关节粗糙度系数(JRC)是剪切强度的关键参数,因为它控制了轮廓的粗糙度。为了探讨岩石关节轮廓粗糙度的空间特征,总共收集了86个实际的岩石关节曲线,从发表的研究和数字化。分析统计上每个轮廓组的轮廓高度变化(PHV)。 PHV的标准偏差被发现在JRC值上强烈依赖。 PPV与JRC的标准偏差的这种相关性可以容易地用于估计给定关节轮廓的JRC。由于PHV的上述统计特征,可以生成具有给定JRC的任何随机谱进行进一步分析。因此,使用离散元件方法(DEM)模拟两个关节曲线(用JRC = 19.6和JRC 18-20的随机生成的简档,使用JRC = 19.6和Barton的标准配置文件)模拟直接剪切(DS)测试。仿真结果表明,两个关节型材具有相似的关节剪切强度,表明随机产生的JRC型材可以在工程模拟中用作良好的人造型材。最后,DEM仿真还表明岩壁的剪切强度来自关节的粗糙度,并且关节的剪切发生在大于4MPa的正常应力下。

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