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煤系泥岩全应力—应变渗透试验研究 被引量:3
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作者 王一栋 姜振泉 +1 位作者 孙强 张蕊 《矿业安全与环保》 北大核心 2012年第4期18-20,23,共4页
为了研究煤系泥岩在采动受力变形过程中渗透率变化的特点,进行了全应力—应变过程的渗透性试验。试验结果得出渗透率随轴向应力的增加可划分3个阶段,在此基础上,考虑渗透率与应力全过程耦合相对复杂的特点,对两者在峰前进行了耦合分析,... 为了研究煤系泥岩在采动受力变形过程中渗透率变化的特点,进行了全应力—应变过程的渗透性试验。试验结果得出渗透率随轴向应力的增加可划分3个阶段,在此基础上,考虑渗透率与应力全过程耦合相对复杂的特点,对两者在峰前进行了耦合分析,得出其耦合曲线回归方程,探索了应力峰值和渗透率峰值相互间的关联效应。揭示了煤系泥岩在采动条件下渗透率的变化规律,为解决煤矿开采突水问题提供较重要的参考依据。 展开更多
关键词 渗透性 全应力—应变过程 煤系泥岩
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淮南矿区典型煤岩体全应力—应变渗透性表征试验 被引量:1
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作者 段昌瑞 陶杰 李志兵 《能源与环保》 2019年第11期112-117,共6页
煤岩体是一种多孔介质,地下开挖使岩体的应力状态发生改变,导致岩体的力学性质和渗透性质发生改变,围岩应力状态和渗流场特性是获取储层瓦斯气、评价或计算矿井涌水量、防突水危害等具体工程问题的理论基础和科学依据。通过对淮南矿区... 煤岩体是一种多孔介质,地下开挖使岩体的应力状态发生改变,导致岩体的力学性质和渗透性质发生改变,围岩应力状态和渗流场特性是获取储层瓦斯气、评价或计算矿井涌水量、防突水危害等具体工程问题的理论基础和科学依据。通过对淮南矿区煤岩进行三轴压缩全过程渗透性试验,分析了煤岩变形破坏全过程以及不同围压和瓦斯压力下的瓦斯渗透特性。得出煤岩全应力—应变曲线与煤岩瓦斯渗透率—全应力应变曲线之间的对应关系。结果表明:在微型裂隙闭合和弹性变形阶段,煤样渗透率随应力增大而减小,进入屈服阶段后,渗透率达到最小值并在峰值后呈持续增大之势;固定瓦斯压力作用下,煤样应力峰值随着围压的增加而逐渐增大,煤样渗透性与围压关系呈指数函数变化规律,且表现出应变滞后的特点;固定围压作用下,渗透率与瓦斯压力关系呈“V”字型走势,即在扩容阶段煤岩样渗透性达到最佳。 展开更多
关键词 淮南矿区 煤岩体 全应力—应变过程 渗透试验 渗透性表征
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脆性岩石动态渗流特性试验研究 被引量:11
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作者 朱珍德 刘立民 《煤炭学报》 EI CAS CSCD 北大核心 2003年第6期588-592,共5页
取三峡永久船闸高边坡花岗岩与山西万家寨水电站高边坡灰岩试样分别进行不同围压条件下全应力-应变过程渗流试验.试验结果表明,岩石变形过程渗透性与变形破坏形式密切相关,岩石在破坏前、后不同变形阶段渗流特性具有明显的不同.在破坏... 取三峡永久船闸高边坡花岗岩与山西万家寨水电站高边坡灰岩试样分别进行不同围压条件下全应力-应变过程渗流试验.试验结果表明,岩石变形过程渗透性与变形破坏形式密切相关,岩石在破坏前、后不同变形阶段渗流特性具有明显的不同.在破坏前的弹性变形乃至屈服阶段,渗透性较弱且随变形的变化不明显;岩样破坏至应变软化段,渗透系数急剧增强并达到渗透峰值.在试验的基础上进一步探讨了岩石全应力-应变过程渗流特点之机理. 展开更多
关键词 脆性岩石 渗流特性 全应力—应变过程
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Regularity and mechanism of coal resistivity response with different conductive characteristics in complete stress-strain process 被引量:4
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作者 Chen Peng Wang Enyuan +3 位作者 Chen Xuexi Liu Zhentang Li Zhonghui Shen Rongxi 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2015年第5期779-786,共8页
The stress,strain as well as resistivity of coal during uniaxial compression process were tested based on self-built real-time testing system of loaded coal resistivity.Furthermore,the coal resistivity regularity and ... The stress,strain as well as resistivity of coal during uniaxial compression process were tested based on self-built real-time testing system of loaded coal resistivity.Furthermore,the coal resistivity regularity and mechanism were analyzed at different stages of complete stress-strain process,which includes the two kinds of coal body with typical conductive characteristics.The results indicate that coal resistivity with different conductive characteristics has different change rules in complete stress-strain process.It is mainly represented at the densification and flexibility phases before dilatation occurs.The variation of resistivity can be divided into two kinds,named down and up.Dilatation of coal samples occurred between 66%σ_(max) and 87%σ_(max).Because of dilatation,coal resistivity involves sudden change.The overall representation is shifting from reducing into improving or from slow improving into accelerated improving.Thus,coal resistivity always shows an increasing tendency at the plastic stage.After peak stress,coal body enters into failure stage.The expanding and communicating of macro fracture causes further improvement of coal resistivity.The maximum value of resistivity rangeability named λ reached 3.49.Through making real-time monitoring on coal resistivity,variation rules of resistivity can be deemed as precursory information so as to reflect the dilatation and sudden change before coal body reaches buckling failure,which can provide a new technological means for forecasting the dynamic disaster of coal petrography. 展开更多
关键词 RESISTIVITY STRESS-STRAIN DILATATION Conductive characteristics Coal structure
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Permeability and pressure distribution characteristics of the roadway surrounding rock in the damaged zone of an excavation 被引量:8
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作者 Xue Yi Gao Feng +1 位作者 Liu Xingguang Liang Xin 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2017年第2期211-219,共9页
Research on the permeability and pressure distribution characteristics of the roadway surrounding rock in the excavation damaged zone(EDZ) is beneficial for the development of gas control technology. In this study, an... Research on the permeability and pressure distribution characteristics of the roadway surrounding rock in the excavation damaged zone(EDZ) is beneficial for the development of gas control technology. In this study, analytical solutions of stress and strain of the roadway surrounding rock were obtained, in which the creep deformation and strain softening were considered. Using the MTS815 rock mechanics testing system and a gas permeability testing system, permeability tests were conducted in the complete stress-strain process, and the evolution characteristics of permeability and strain were studied over the whole loading process. Based on the analytical solutions of stress and strain and the governing equation of gas seepage flow, this paper proposes a hydro-mechanical(HM) model, which considers three different zones around the roadway. Then the gas flow process in the roadway surrounding rock in three different zones was simulated according to the engineering geological conditions, thus obtaining the permeability and pressure distribution characteristics of the roadway surrounding rock in three different zones. These results show that the surrounding rock around the roadway can be divided into four regions-the full flow zone(FFZ), flow-shielding zone(FSZ), transitive flow zone(TFZ), and in-situ rock flow zone(IRFZ). These results could provide theoretical guidance for the improvement of gas extraction and gas control technology. 展开更多
关键词 Roadway Excavation damaged zone Viscoelastic-plastic analysis Gas flow model Permeability
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Seepage laws of two kinds of disastrous gas in complete stress-strain process of coal 被引量:2
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作者 Cao Shugang Guo Ping Zhang Zunguo Li Yi Wang Yong 《Mining Science and Technology》 EI CAS 2011年第6期851-856,共6页
The similarities and differences in seepage flow evolution laws of CH4 and CO2 during complete stress- strain process of samples were comparatively analyzed. The results show that the seepage flow evolution laws of CH... The similarities and differences in seepage flow evolution laws of CH4 and CO2 during complete stress- strain process of samples were comparatively analyzed. The results show that the seepage flow evolution laws of CH4 and CO2 are extremely similar during the stress-strain process, showing that the character- istic first decreased and then increased. A mathematical model was also established according to the rela- tionship of seepage velocity and axial strain. However, due to the strong adsorption ability of CO2, the coal samples generated a more serious ''Klinkenberg effect'' under the condition of CO2. Owing to this, the CO2 seepage flow resulted into occurrence of ''stagnation'' phenomenon during the late linear elastic stage II. In the strain consolidation stage III, the increment rate of CH4 seepage velocity was significantly greater than that of CO2. In the stress descent stage IV, when the axial load reached the peak pressure of coal, the increment rates of CH4 seepage velocity presented a turning point. But the changing rate of CO2 seepage velocity still remained slow and a turning point was presented at one time after the peak of thestrain pressure, which showed an obvious feature of hysteresis. 展开更多
关键词 Outburst coal CH4 CO2 Klinkenberg effect Complete stress–strain
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