Ab'/> Updates to JRC-JCS model for estimating the peak shear strength of rock joints based on quantified surface description
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Updates to JRC-JCS model for estimating the peak shear strength of rock joints based on quantified surface description

机译:基于量化的表面描述,更新JRC-JCS模型,用于估计岩接头的峰值剪切强度

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摘要

AbstractThe surface morphology of joints has a significant effect on the mechanical properties of rock masses. The key morphological indices developed in this study have been used to analyze the joint surface morphology quantitatively, and a new peak shear strength model has also been developed. Firstly, three-dimensional morphology scanning tests have been carried out on seven groups (27 blocks in total) of rock joints with different surface morphologies, and a new functional relationship between the apparent dip angle and the initial contact area ratio has been established: i.e.Aθ?+=exp?θ?/θˉ?n, whereAθ?+is the contact area ratio,θˉ?is the characteristics angle, andnis a fitting parameter. The average joint height has been used to account for the effect of the joint fluctuation on the surface morphology. Ten standard roughness profiles have been digitalized to compute the roughness indices of each profile and to establish a relationship with theJRC(joint roughness coefficient). The direct shear tests have been carried out. By analyzing the test results, a new peak shear strength model has been developed. Comparing with the results from five classical models, the error between the calculated results of the new model and the experimental results is the smallest. Hence, the new model is a reliable tool for the estimation of the peak shear strength of rock joints.Highlights?Effects of dip angle and average joint height on roughness are discussed respectively.?A new expression is proposed to describe the relationship between apparent dip angle and contact area ratio.?The relationship between new roughness indices and JRC is established, which is also applicable to three-dimensional joint surfaces.?Based on new roughness indices, a new peak shear strength model is proposed.
机译:<![cdata [ 抽象 关节的表面形态对岩体的机械性能有显着影响。本研究开发的关键形态指数已被用于定量分析关节表面形态,并且还开发了新的峰剪强度模型。首先,在具有不同表面形态的摇滚接头的七组(总共27个嵌段)上进行了三维形态扫描试验,并且已经建立了表观倾角和初始接触面积比之间的新功能关系:即 a θ + = mo> exp < MML:MI>θ / θ ˉ n ,其中 a θ < CE:sup =“post”> + 是接触面积比, θ ˉ 是特征角, n 是一个配合参数。平均关节高度已被用于考虑关节波动对表面形态的影响。已经数字化了十个标准粗糙度配置文件以计算每个配置文件的粗糙度指数并与 jrc (关节粗糙度系数)建立关系。已经进行了直接剪切测试。通过分析测试结果,开发了一种新的峰值剪切强度模型。与五种经典模型的结果相比,新模型的计算结果与实验结果之间的误差是最小的。因此,新模型是估计岩壁峰值剪切强度的可靠工具。 突出显示 分别讨论了倾角的效果和粗糙度的平均关节高度。 提出了一种新表达式来描述表观倾角和接触面积比之间的关系。 新粗糙度的关系建立了ICE和JRC,这也适用于三维关节表面。 ?< / ce:标签> 基于新的粗糙度指标,提出了一种新的峰值剪切强度模型。 < / CE:列表>

著录项

  • 来源
    《Engineering Geology》 |2017年第2017期|共19页
  • 作者单位

    The Key Laboratory of Safety for Geotechnical and Structural Engineering of Hubei Province School of Civil Engineering Wuhan University;

    The Key Laboratory of Safety for Geotechnical and Structural Engineering of Hubei Province School of Civil Engineering Wuhan University;

    The Key Laboratory of Safety for Geotechnical and Structural Engineering of Hubei Province School of Civil Engineering Wuhan University;

    The Key Laboratory of Safety for Geotechnical and Structural Engineering of Hubei Province School of Civil Engineering Wuhan University;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水文地质学与工程地质学;
  • 关键词

    Rock joint; JRC-JCSmodel; 3D surface morphology; Peak shear strength;

    机译:摇滚关节;JRC-JCSMODEL;3D表面形态;尖峰剪切强度;

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