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Numerical Homogenization of Jointed Rock Masses Using Wave Propagation Simulation

机译:节理岩体数值均质化的波传播模拟

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Homogenization in fractured rock analyses is essentially based on the calculation of equivalent elastic parameters. In this paper, a new numerical homogenization method that was programmed by means of a MATLAB code, called HLA-Dissim, is presented. The developed approach simulates a discontinuity network of real rock masses based on the International Society of Rock Mechanics (ISRM) scanline field mapping methodology. Then, it evaluates a series of classic joint parameters to characterize density (RQD, specific length of discontinuities). A pulse wave, characterized by its amplitude, central frequency, and duration, is propagated from a source point to a receiver point of the simulated jointed rock mass using a complex recursive method for evaluating the transmission and reflection coefficient for each simulated discontinuity. The seismic parameters, such as delay, velocity, and attenuation, are then calculated. Finally, the equivalent medium model parameters of the rock mass are computed numerically while taking into account the natural discontinuity distribution. This methodology was applied to 17 bench fronts from six aggregate quarries located in Tunisia, Spain, Austria, and Sweden. It allowed characterizing the rock mass discontinuity network, the resulting seismic performance, and the equivalent medium stiffness. The relationship between the equivalent Young's modulus and rock discontinuity parameters was also analyzed. For these different bench fronts, the proposed numerical approach was also compared to several empirical formulas, based on RQD and fracture density values, published in previous research studies, showing its usefulness and efficiency in estimating rapidly the Young's modulus of equivalent medium for wave propagation analysis.
机译:裂缝岩体分析中的均质化基本上是基于等效弹性参数的计算。在本文中,提出了一种新的数值均化方法,该方法是通过称为HLA-Dissim的MATLAB代码进行编程的。所开发的方法基于国际岩石力学学会(ISRM)扫描线场测绘方法,模拟了真实岩体的不连续网络。然后,它评估一系列经典的关节参数来表征密度(RQD,特定的不连续长度)。使用复杂的递归方法,针对每个模拟的不连续性,通过以其振幅,中心频率和持续时间为特征的脉搏波从模拟节理岩体的源点传播到接收点,以评估其透射和反射系数。然后计算地震参数,例如延迟,速度和衰减。最后,在考虑自然不连续性分布的同时,数值计算岩体的等效介质模型参数。该方法已应用于来自突尼斯,西班牙,奥地利和瑞典的六个集合采石场的17个工作台。它可以表征岩体不连续性网络,所得的地震性能以及等效的介质刚度。还分析了等效杨氏模量与岩石不连续性参数之间的关系。对于这些不同的实验台面,还将所提出的数值方法与基于RQD和裂缝密度值的经验公式进行比较,这些公式已在先前的研究中发表,显示了其在快速估计等效介质的杨氏模量以进行波传播分析中的有用性和效率。 。

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