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Parametric study of integrity on the mechanical properties of transversely isotropic rock mass using DEM

机译:使用DEM横向各向同性岩体力学性能的参数研究

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The evaluation of the mechanical properties of a transversely isotropic rock mass is a challenging task in practical engineering. This paper aims to study the relationships between the integrity parameters and mechanical properties of a transversely isotropic rock mass. The rock mass quality designation (RQD) is an important index and reference for rock mass quality evaluation that was introduced to establish the numerical models of a jointed rock mass with different integrities. The numerical models of a transversely isotropic rock mass were established using the bonded particle model (BPM) and smooth joint model (SJM) embedded into the Particle Flow Code software (PFC2D). After calibrating the microscopic parameters of the intact rock and structural planes, a series of compression tests of a transversely isotropic rock mass was carried out to determine compressive strength and deformation modulus, and main factors were considered including the RQD, inclined angle of structural planes, structural plane thickness, structural plane properties, intact rock properties, and confining pressure. The experimental results showed that the mechanical parameters and failure modes of a transversely isotropic rock mass were controlled by the integrity parameters. By comparing the value of sigma(cm)/sigma(c) (ratio of the compressive strength of rock mass to rock mass) and E-m/E-r (ratio of the deformation modulus of rock mass to rock mass) with field test results, the results obtained from the discrete element method were demonstrated to be reasonable.
机译:横向各向同性岩体的力学性能评价是实际工程中的一个具有挑战性的任务。本文旨在研究横向各向同性岩体的完整性参数与机械性能之间的关系。岩石大众品质指定(RQD)是岩石质量质量评价的重要指标和参考,以建立具有不同完整性的关节岩体的数值模型。使用嵌入粒子流代码软件(PFC2D)的粘合粒子模型(BPM)和平滑的接头模型(SJM)建立横向各向同性岩体的数值模型。校准完整岩石和结构平面的微观参数后,进行了一系列横向各向同性岩体的压缩试验,以确定压缩强度和变形模量,并且认为主要因素包括RQD,倾斜角度的结构平面,结构平面厚度,结构平面,完整的岩石性能和限制压力。实验结果表明,通过完整性参数控制横向各向同性岩体的机械参数和失效模式。通过比较Sigma(cm)/ sigma(c)的值(岩体压缩强度与岩体质量的比率)和em / er(岩体变形模量与岩体质量的比率)与现场测试结果,从离散元法获得的结果被证明是合理的。

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