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首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >A new method estimating the 2D Joint Roughness Coefficient for discontinuity surfaces in rock masses
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A new method estimating the 2D Joint Roughness Coefficient for discontinuity surfaces in rock masses

机译:估算岩体不连续面二维接缝粗糙度系数的新方法

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摘要

Joint Roughness Coefficient (JRC) is one of the principal paramelers used to calculate the shear strength and conducting aperture of discontinuities. Originally, 10 standard discontinuity profiles were commonly associated with JRC values. However, as the original profiles provided a rough estimation of joint roughness, many researchers attempted to investigate different methods of analysis to determine JRCs accurately. In the current study, we are proposing a new method for accurate JRC estimation. Firstly, we introduced a new roughness index (A) using a Root Mean Square method, which considers inclination angle, amplitude of asperities and their directions. Secondly, the logistics function between A and JRC was derived after locating the mean line, which is the line between maximum and minimum points of asperities. Finally, three formulae were developed to calculate upper-bound, suggested and lower-bound values of JRCs in relation to the variation of A for two-dimensional discontinuity profiles. Comparison of our experimental test results with data available in the literature showed that the proposed roughness index, A, can be used to determine JRC values accurately resulting in better estimation of discontinuity shear strength and conducting apertures. In addition, the sensitivity of JRC, shear strength and the ratio of mechanical aperture to conducting aperture (E/e) with respect to A were also investigated. The results revealed that trends of JRC, shear strength and E/e ratios are similar. These parameters are found to be most sensitive when A, is in the range of 0.05-020. (C) 2014 Elsevier Ltd. All rights reserved.
机译:联合粗糙度系数(JRC)是用于计算抗剪强度和不连续性传导孔径的主要准熔化器之一。最初,通常将10个标准间断轮廓与JRC值关联。但是,由于原始轮廓可以粗略估计接头的粗糙度,因此许多研究人员试图研究不同的分析方法来准确确定JRC。在当前的研究中,我们正在提出一种用于精确JRC估计的新方法。首先,我们使用均方根方法引入了一种新的粗糙度指数(A),该系数考虑了倾斜角度,粗糙程度及其方向。其次,A和JRC之间的物流函数是在定位均值线之后得出的,该均值线是最大和最小凹凸点之间的线。最后,开发了三个公式来计算二维不连续性轮廓的JRC与A的变化有关的上限,建议值和下限值。将我们的实验测试结果与文献中的数据进行比较,结果表明,建议的粗糙度指数A可用于准确确定JRC值,从而可以更好地估计间断剪切强度和导电孔。此外,还研究了JRC的灵敏度,抗剪强度以及机械孔径与导电孔径的比(E / e)相对于A的关系。结果表明,JRC,剪切强度和E / e比的趋势相似。当A在0.05-020范围内时,发现这些参数最敏感。 (C)2014 Elsevier Ltd.保留所有权利。

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