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A comparative study of stress influence on fracture apertures in fragmented rocks 被引量:1
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作者 Hossein Agheshlui Mohammad H.Sedaghat Siroos Azizmohammadi 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2019年第1期38-45,共8页
This study compares the calculated fracture apertures in a fragmented rock layer under different stress scenarios using two different approaches. Approach 1 is a simplified method using a two-dimensional(2 D) mapping ... This study compares the calculated fracture apertures in a fragmented rock layer under different stress scenarios using two different approaches. Approach 1 is a simplified method using a two-dimensional(2 D) mapping of the fracture network and projects the far-field stresses to individual fractures, and calculates the dilation, normal and shear displacements using experimental stiffnesses available in the literature. Approach 2 employs a three-dimensional(3 D) finite element method(FEM) for the mechanical analysis of the fragmented rock layer considering the interaction with the neighbouring rock layers, frictional interfaces between the rock blocks, stress variations within the fragmented rock layer,and displacements, rotations and deformations of rock blocks. After calculating the fracture apertures using either of the approaches, the permeability of the fragmented rock layer is calculated by running flow simulations using the updated fracture apertures. The comparison between the results demonstrates an example of the inaccuracies that may exist in methods that use simplified assumptions such as2 D modelling, ignoring the block rotations and displacements, projected far-field stresses on fractures,and the stress variations within the rock layer. It is found that for the cases considered here, the permeability results based on apertures obtained from the simplified approach could be 40 times different from the results from apertures calculated using a full mechanical approach. Hence, 3 D mechanical modelling implementing realistic boundary conditions, while considering the displacements and rotations of rock blocks, is suggested for the calculation of apertures in fragmented rocks. 展开更多
关键词 fracture aperture change In SITU stresses Frictional INTERFACES ENSEMBLE PERMEABILITY
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基于传递矩阵算法的裂隙注浆扩散机制研究 被引量:1
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作者 刘若坤 王伟 +2 位作者 黎海滨 刘佳佳 姚泽 《水利与建筑工程学报》 2021年第1期207-213,共7页
在裂隙岩体注浆工程中,由注浆压力引起的裂隙位移对注浆扩散过程影响显著。为研究浆体在裂隙岩体流动时浆液的扩散规律,克服以往假设裂隙无开度变化且仅在单一裂隙内考虑浆液扩散的情况,将传递矩阵算法引入宾汉流体本构方程,利用传递矩... 在裂隙岩体注浆工程中,由注浆压力引起的裂隙位移对注浆扩散过程影响显著。为研究浆体在裂隙岩体流动时浆液的扩散规律,克服以往假设裂隙无开度变化且仅在单一裂隙内考虑浆液扩散的情况,将传递矩阵算法引入宾汉流体本构方程,利用传递矩阵求解任意位置处的裂隙位移,同时建立考虑浆液在岩体间劈裂注浆的简化裂隙岩体模型通过加设阻力来模拟浆液在岩体内扩散的能量耗损,从而在平板裂隙条件下可以完整准确描述浆液在裂隙中及岩体间连续扩散的过程,建立了基于传递矩阵法的裂隙岩体注浆模型。应用有限元软件COMSOL分别建立单裂隙、多裂隙注浆模型对上述理论模型进行对比验证。 展开更多
关键词 传递矩阵算法 浆液扩散 裂隙开度变化 裂隙岩体组简化模型
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