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煤体变形与瓦斯解吸/吸附关系的研究实验 被引量:2
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作者 彭定弦 《煤炭技术》 CAS 北大核心 2016年第9期173-175,共3页
专门针对瓦斯解吸及吸附作用与煤岩形变的相关性做出实验认证,条件是恒压恒温,利用物理上的排水法间接获得瓦斯体积,又由于解吸量与吸附量是一对互逆过程,那么即可利用回归分析便能够算出朗格缪尔体积常数a以及压力常数b,进而把所获得... 专门针对瓦斯解吸及吸附作用与煤岩形变的相关性做出实验认证,条件是恒压恒温,利用物理上的排水法间接获得瓦斯体积,又由于解吸量与吸附量是一对互逆过程,那么即可利用回归分析便能够算出朗格缪尔体积常数a以及压力常数b,进而把所获得数据进行拟合分析,得到了体积变化与解吸量的关系式,最终分析出瓦斯解吸及吸附作用和煤岩体积形变的定量关系。 展开更多
关键词 瓦斯突出 瓦斯解吸/吸附 初始孔隙压
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Deformation and Failure Mechanism of Phyllite under the Effects of THM Coupling and Unloading 被引量:1
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作者 MENG Lubo LI Tianbin +3 位作者 XU Jin CHEN Guoqing MA Hongming YIN Hongyu 《Journal of Mountain Science》 SCIE CSCD 2012年第6期788-797,共10页
Although the study of TM(Thermo Mechanics),HM(Hydraulic-Mechanics) and THM(Thermo-Hydraulic-Mechanics) coupling under a loading test have been under development,rock failure analysis under THM coupling and unloading i... Although the study of TM(Thermo Mechanics),HM(Hydraulic-Mechanics) and THM(Thermo-Hydraulic-Mechanics) coupling under a loading test have been under development,rock failure analysis under THM coupling and unloading is an emerging topic.Based on a high temperature triaxial unloading seep test for phyllite,this paper discusses the deformation and failure mechanism of phyllites under the "H M,T→H,T→M" incomplete coupling model with unloading conditions.The results indicate that the elastic modulus and initial permeability decrease and the Poisson's ratio increases with increasing temperature;the elastic modulus decreases and the Poisson's ratio and initial permeability increase with increasing water pressure.During the unloading process,rock penetrability is small at the initial elastic deformation phase,but the penetrability increases near the end of the elastic deformation phase;mechanisms involving temperature and water pressure affect penetrability differently.Phyllite failure occurs from the initial thermal damage of the rock materials,splitting and softening(which is caused by pore water pressure),and the pressure difference which is formed from the loading axial pressure and unloading confining pressure.The phyllite failure mechanism is a transtensional(tension-shearing) failure. 展开更多
关键词 PHYLLITE Mechanical characteristics Penetrability Failure mechanism Loading test Thermo-Hydraulic-Mechanics(THM)
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