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Numerical Study on Anisotropy of the Representative Elementary Volume of Strength and Deformability of Jointed Rock Masses

机译:关节岩体强度和可变形性各向异性各向异性的数值研究

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摘要

Representative elementary volume (REV) is a significant parameter in analyzing the size effect and the continuous media theory of natural jointed rock masses. Generalized RVEs, which include the REV of jointed rock masses (RREV) and the REV of mechanical parameters of jointed rock masses (PREV), were introduced and investigated based on the anisotropy of natural jointed rock masses. A two-dimensional model was developed based on the available geology, material heterogeneity and Monte Carlo simulation of joint network. The size effect and anisotropy of the elastic modulus and the uniaxial compressive strength (UCS) of jointed rock masses were investigated, and then, the PREV was determined. Numerical results showed that the PREVs for both the elastic modulus and UCS exhibited strong anisotropy. The RREV dimension was determined as 14 x 14 m based on the PREV of different rotational directions. The equivalent mechanical parameters of the elastic modulus and UCS were determined for different rotational directions. It is suggested that the anisotropy of the PREV should be considered when the RREV and corresponding equivalent mechanical parameters are assessed.
机译:代表性基本体积(Rev)是分析尺寸效应和自然关节岩体的连续媒体理论的重要参数。引入和研究了包括连接岩体(RREV)的REV的REV的广义旱木,并基于自然关节岩体的各向异性研究和调查。基于联合网络的可用地质,材料异质性和蒙特卡罗模拟开发了二维模型。研究了弹性模量的尺寸和各向异性和关节岩体的单轴抗压强度(UCS),然后确定预期。数值结果表明,弹性模量和UCS的上述结果表现出强烈的各向异性。基于不同旋转方向的前面,将RREV尺寸确定为14×14m。针对不同的旋转方向确定弹性模量和UCS的等效机械参数。建议当评估RREV和相应的等效机械参数时,应考虑上一部分的各向异性。

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