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New Peak Shear Strength Criterion of Rock Joints Based on Quantified Surface Description

机译:基于量化表面描述的节理岩体的新峰值抗剪强度准则

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The prime objective of this work is to improve our understanding of the shear behavior of rock joints. Attempts are made to relate the peak shear strength of rock joints with its three-dimensional surface morphology parameters. Three groups of tensile joint replicas with different surface morphology are tested with direct shear tests under constant normal load (CNL) conditions. Firstly, the three-dimensional surface characterization of these joints is evaluated by an improved roughness parameter before being tested. Then, a new empirical criterion is proposed for these joints expressed by three-dimensional quantified surface roughness parameters without any averaging variables in such a way that a rational dilatancy angle function is used instead of JRC·log_(10)(JCS/σ_n) by satisfying the new peak dilatancy angle boundary conditions under zero and critical-state normal stress (not physical infinite normal stress). The proposed criterion has the capability of estimating the peak shear strength at the laboratory scale and the required roughness parameters can be easily measured. Finally, a comparison among the proposed criterion, Grasselli's criterion, and Barton's criterion are made from the perspective of both the rationality of the formula and the prediction accuracy for the three groups of joints. The limitations of Grasselli's criterion are analyzed in detail. Another 37 experimental data points of fresh rock joints by Grasselli are used to further verify the proposed criterion. Although both the proposed criterion and Grasselli's criterion have almost equal accuracy of predicting the peak shear strength of rock joints, the proposed criterion is easier and more intuitive from an engineering point of view because of its Mohr-Coulomb type of formulation.
机译:这项工作的主要目的是增进我们对岩石节理的剪切行为的理解。试图将节理的峰值抗剪强度与其三维表面形态参数联系起来。在恒定法向载荷(CNL)条件下通过直接剪切试验测试了三组具有不同表面形态的拉伸接头副本。首先,在测试之前,通过改进的粗糙度参数评估这些接头的三维表面特性。然后,针对这些用三维量化的表面粗糙度参数表示的接头提出了新的经验准则,该准则没有任何平均变量,从而使用有理剪胀角函数代替JRC·log_(10)(JCS /σ_n),在零和临界状态法向应力(不是物理无限法向应力)下满足新的峰值剪胀角边界条件。所提出的标准具有在实验室规模上估计峰值剪切强度的能力,并且可以容易地测量所需的粗糙度参数。最后,从公式的合理性和三组关节的预测精度的角度对建议的准则,Grasselli准则和Barton准则进行了比较。详细分析了Grasselli准则的局限性。格拉斯利(Grasselli)的另外37个新鲜节理的实验数据点被用于进一步验证所提出的标准。尽管拟议的准则和Grasselli准则在预测岩石节理的峰值抗剪强度方面几乎具有相同的精度,但是从工程角度来看,由于其摩尔-库仑类型的公式,因此拟议的准则更容易,更直观。

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