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含冰软弱面的冻结裂隙红砂岩的强度试验 被引量:15
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作者 刘波 刘念 +2 位作者 李东阳 王帅 刘颖超 《煤炭学报》 EI CAS CSCD 北大核心 2016年第4期843-849,共7页
为了研究冻结条件下西部地区裂隙岩体的力学性质,以西部中生代地层典型的红砂岩为试验对象,通过数码显微镜观察分析了红砂岩的颗粒、孔洞分布特征,并在-5^-15℃条件下,对无裂隙冻结红砂岩和裂隙倾角β为0°,15°,30°和45&#... 为了研究冻结条件下西部地区裂隙岩体的力学性质,以西部中生代地层典型的红砂岩为试验对象,通过数码显微镜观察分析了红砂岩的颗粒、孔洞分布特征,并在-5^-15℃条件下,对无裂隙冻结红砂岩和裂隙倾角β为0°,15°,30°和45°的冻结裂隙红砂岩进行了单轴和三轴压缩试验。试验结果表明:冻结红砂岩和冻结裂隙红砂岩的强度都随围压的增加而线性增加。冻结裂隙红砂岩强度随着裂隙倾角的增加而非线性递减,在裂隙倾角大于30°后,强度降低的幅度不大。含冰软弱面的冻结裂隙红砂岩的强度和侧向变形主要受裂隙冰控制,因此工程中需要了解裂隙的角度分布特征。 展开更多
关键词 冻结红砂岩 冻结裂隙红砂岩 抗压强度试验 三轴抗压强度试验 力学特性
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A comprehensive study of the mechanical properties of rock-like materials for inelastic deformation model establishment
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作者 TRIMONOVA Mariia STEFANOV Yuri +1 位作者 DUBINYA Nikita BAKEEV Rustam 《地质力学学报》 北大核心 2025年第3期475-490,共16页
[Objective]The work is devoted to the study of irreversible deformation of artificial samples subjected to a set of standard experiments,with an aim to study their mechanical properties.The principal idea of the study... [Objective]The work is devoted to the study of irreversible deformation of artificial samples subjected to a set of standard experiments,with an aim to study their mechanical properties.The principal idea of the study is related to the preparation of an artificial material with an established constitutive behavior model.The existence of such a well-described material provides future opportunities to conduct controllable experiments on various mechanical processes in rock-like material for further development and validation of theoretical models used in rock mechanics.[Methods]A set of artificial samples was prepared for careful assessment through a number of loading tests.Experimental work was carried out to determine the rheological properties under conditions of triaxial compression tests and uniaxial tension.Triaxial loading tests are completed for 9 samples with varying radial stress levels(0-5 MPa).The samples are loaded up to the yield point with control of radial and volumetric strain.The experimental results,which contain the obtained interrelationships between axial and radial stresses and strains,are analyzed using the Drucker-Prager yield surface.Material hardening is taken into account through the non-associated plastic flow law with the cap model.Numerical modeling of sample loading is performed through the finite difference method.Mathematical model parameters are adjusted to minimize the discrepancy between numerical modeling results and experimental data.The design of a series of experimental studies necessary to determine all the parameters of the model has been studied.[Results]It is shown that the formulated mathematical model allows to reliably reproduce the inelastic behavior of the studied material,and it can be used to solve a set of applied problems in continuum mechanics,the problem of numerical simulation of hydraulic fracture growth in an elastoplastic medium in particular.It was found that for the entire range of applied lateral loads(0-5 MPa),the elastic limit varied from 2 to 4 MPa,after which the material began to behave plastically.It was also determined that at lateral loads≥3 MPa,compaction began to appear in the material beyond the yield point.Judging by the dependence of volumetric strains under a lateral load equal to 1.4 MPa,compaction should begin to appear even at lateral loads lower than 3 MPa.[Conclusion]Taking the plastic behavior of the material into account is necessary when moving on to modeling the hydraulic fracturing process in such a material,and the resultant plasticity parameters for the model material can be used for numerical modeling of elastoplastic deformation of the rock under consideration,including processes such as hydraulic fracture growth in a poroelastoplastic medium.[Significance]The suggested procedure to interpret results of experimental studies can be used for further numerical modeling of mechanical processes in rock masses with inelastic strain accumulation.This opportunity can increase the reliability of geomechanical models used for the optimization of hydrocarbon fields development. 展开更多
关键词 plastic deformation internal friction shear strength triaxial compression “Brazilian”test loading diagrams
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