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砾石心墙土复杂应力耦合作用下的渗流特性 被引量:7
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作者 詹美礼 辛圆心 +3 位作者 唐健 黄青富 盛金昌 罗玉龙 《水利水电科技进展》 CSCD 北大核心 2016年第4期36-41,共6页
为研究土石坝中心墙土在复杂应力状态下的渗透特性以及其渗透性演变模型,利用自行研制的渗流-应力耦合试验装置,针对长河坝水电站砾石土进行多种应力耦合作用下渗透特性试验研究。结果表明:复杂应力状态对心墙土渗流特性影响显著;土样... 为研究土石坝中心墙土在复杂应力状态下的渗透特性以及其渗透性演变模型,利用自行研制的渗流-应力耦合试验装置,针对长河坝水电站砾石土进行多种应力耦合作用下渗透特性试验研究。结果表明:复杂应力状态对心墙土渗流特性影响显著;土样在设计水力梯度内渗流满足达西定律,且均未发生渗透破坏;在同一围压下,砾石土体的渗透系数随着偏应力和轴向应力的增大而逐渐减小;试验过程中轴向应变随应力作用时间的变化呈阶梯状,且随着偏应力的增大,渗透梯度和轴向应变也增大;建立了土体渗透系数与应力函数的经验公式,从理论上进一步揭示了砾石心墙土应力耦合作用下的渗透机制。 展开更多
关键词 砾石心墙土 复杂应力 渗透系数 轴向应变 渗透性演变
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Numerical modelling rock deformation subject to nitrogen cooling to study permeability evolution 被引量:10
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作者 Chunhui Zhang Laigui Wang +1 位作者 Jianhua Du Yinghui Tian 《International Journal of Coal Science & Technology》 EI 2015年第4期293-298,共6页
How to model the permeability evolution of rock subjected to liquid nitrogen cooling is a key issue. This paper proposes a simple but practical method to study the permeability evolution of rocks subject to liquid nit... How to model the permeability evolution of rock subjected to liquid nitrogen cooling is a key issue. This paper proposes a simple but practical method to study the permeability evolution of rocks subject to liquid nitrogen cooling. FLAC with FISH function was employed to numerically model the rock behavior under cooling. The enhanced perme- ability of the volumetric strain was defined, and the permeability was directly evaluated based on element's volumetric strain. Detailed procedures for implementing the evolution model of permeability in this paper were presented. A case study was carried out to simulate a coal bed where liquid nitrogen was injected in the bore hole. And a semi-submerged test of liquid nitrogen was performed. The method to model the permeability evolution of rocks subject to liquid nitrogen shock in this paper was proved to be right by the test results. This simulation results are discussed with the hope to provide some insight into understanding the nitrogen cooling practice. 展开更多
关键词 Liquid nitrogen cooling Tension failure Temperature Permeability evolution Enhanced permeability
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Creep properties and permeability evolution in triaxial rheological tests of hard rock in dam foundation 被引量:8
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作者 XU Wei-ya WANG Ru-bin +3 位作者 WANG Wei ZHANG Zhi-liang ZHANG Jiu-chang WANG Wen-yuan 《Journal of Central South University》 SCIE EI CAS 2012年第1期252-261,共10页
Triaxial creep tests were carried out under seepage pressure by using rock servo-controlled triaxial rheology testing equipment. Based on experimental results, rock rheological properties influenced by seepage-stress ... Triaxial creep tests were carried out under seepage pressure by using rock servo-controlled triaxial rheology testing equipment. Based on experimental results, rock rheological properties influenced by seepage-stress coupling were studied, and variations of seepage rate with time in complete creep processes of rock were analyzed. It is shown that, when the applied stress is less than failure stress level, the creep deformation is not obvious, and its main form is steady-state creep. When applied stress level is greater than or less than but close to fracture stress, it is easier to see the increase of creep deformation and the more obvious accelerative creep characteristics. The circumferential creep deformation is obviously higher than the axial creep deformation. At the stage of steady-state creep, the average of seepage flow rate is about 4.7×10-9 rn/s at confining pressure (tr3) of 2 MPa, and is about 3.9×10-9 m/s at a3 of 6 MPa. It is seen that the seepage flow rate at or3 of 2 MPa in this case is obviously larger than that at tr3 of 6 MPa. At the stage of creep acceleration, the seepage flow rate is markedly increased with the increase of time. The variation of rock permeability is directly connected to the growth and evolution of creep crack. It is suggested that the permeability coefficient in complete creep processes of rock is not a constant, but is a function of rock creep strain, confining pressure, damage variable and pore water pressure. The results can be considered to provide a reliable reference for the establishment of rock rheological model and parameter identification. 展开更多
关键词 rock mechanics creep properties volcanic breccia triaxial rheology test permeability evolution creep damage
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