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Influence of fracture roughness and micro-fracturing on the mechanical response of rock joints: a discrete element approach

机译:裂缝粗糙度和微压法对岩壁机械响应的影响:离散元件方法

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摘要

The closure and shear behaviors of 3D self-affine rock joints are simulated by the Discrete Element Method using PFC3D. First, a methodology to produce rough self-affine rock joints using DEM is presented then eight self-affine rough joints, having low and high values of roughness exponent, self-affine correlation length, and height variance, are considered. After the calibration of the elastic and fracture behaviors of an elementary volume formed from spherical discrete elements bonded by elastic beams, the numerical rock joints are submitted to closure tests at 14 and 21 MPa followed by a shear test at constant velocity and under constant normal load. Each DEM joint is tested using three different mechanical models: rigid, ideally elastic and elastic-fracturing. The use of these three models allows highlighting the distinct influences of the morphology, the joint stiffness and the micro-fracturing on the closure and shear behaviors of the joints.
机译:使用PFC3D的离散元件法模拟了3D自助摇滚接头的闭合和剪切行为。 首先,呈现使用DEM产生粗糙自助摇滚关节的方法,然后呈现八个自助性粗糙接头,具有低粗糙度指数,自酰胺相关长度和高度方差的高值和高值。 在校准由由弹性束粘合的球形离散元件形成的基本体积的弹性和断裂行为之后,数值摇滚接头在14和21MPa处提交到闭合试验,然后在恒定速度下进行剪切测试,并且在恒定的正常负载下 。 每个DEM接头采用三种不同的机械模型进行测试:刚性,理想的弹性和弹性压裂。 这种三种模型的使用允许突出显示形态,关节刚度和微压缩对关节的闭合和剪切行为的不同影响。

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