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Correlation between the Joint Roughness Coefficient and Rock Joint Statistical Parameters at Different Sampling Intervals

机译:不同采样间隔的关节粗糙度系数和岩线统计参数之间的相关性

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摘要

Joint roughness coefficient (JRC) is a major factor that affects the mechanical properties of rock joints. Statistical methods that are used to calculate the JRC increasingly depend on a sampling interval (Δx). The variation rules of fitting parameters a, b, and b/a at different Δx values were analyzed on the basis of the relationship between the JRC and statistical parameter Z2. The relationship between the fitting parameters a and b was deduced in accordance with the ten standard profiles proposed by Barton. Empirical formulas for the JRC, Z2, and Δx were also established. The estimation accuracy of the JRC was the highest in the analysis of Δx values within 0.1–5.0 mm. JRC tests were conducted through inverse value comparative analysis. Results showed that the outcome calculated using the general formula and the JRC inverse values demonstrate improved agreement and verify the rationality of the general formula. The proposed formula can perform rapid and simple JRC calculation within the Δx range of 0.1–5.0 mm using Z2, thereby indicating favorable application prospects.
机译:联合粗糙度系数(JRC)是影响岩缝的机械性能的主要因素。用于计算JRC的统计方法越来越依赖于采样间隔(ΔX)。基于JRC和统计参数Z2之间的关系,分析了拟合参数A,B和B / A的拟合参数A,B和B / A的变化规则。根据Barton提出的十个标准型材推导出拟合参数A和B之间的关系。还建立了JRC,Z2和ΔX的经验公式。 JRC的估计准确度在0.1-5.0mm内的Δx值分析中最高。通过逆值比较分析进行JRC测试。结果表明,使用通式和JRC逆值计算的结果表明了改进的协议,并验证了通式的合理性。使用Z2,所提出的公式可以在0.1-5.0mm的ΔX范围内进行快速和简单的JRC计算,从而指示有利的应用前景。

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