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侏罗系地层巷道淋水顶板破坏机理及治理研究 被引量:3
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作者 李学彬 谷群涛 +4 位作者 温国惠 孙兆冰 朱建平 陈明虎 周玉颖 《煤炭科学技术》 EI CAS CSCD 北大核心 2023年第9期170-179,共10页
我国西部侏罗系主采煤层顶板普遍赋存低层位弱富水层,导致巷道顶板尤其是顶板锚索孔长时间淋水,降低顶板围岩强度和顶板支护效果,影响矿井煤巷顶板安全。为了研究淋水顶板破坏机理及治理措施,以内蒙古双欣矿业杨家村煤矿414106辅助运输... 我国西部侏罗系主采煤层顶板普遍赋存低层位弱富水层,导致巷道顶板尤其是顶板锚索孔长时间淋水,降低顶板围岩强度和顶板支护效果,影响矿井煤巷顶板安全。为了研究淋水顶板破坏机理及治理措施,以内蒙古双欣矿业杨家村煤矿414106辅助运输巷淋水区为研究对象,通过现场调研和顶板钻孔取样可知,向斜区巷道顶板4 m以上区域存在明显导水裂隙,锚索孔流水呈线性淋水状态,顶板围岩弯离层程度大,部分锚索锚固段脱离围岩失效。矿物成分分析和水理试验表明,顶板砂质泥岩的黏土矿物中高岭石含量高达73%,软化系数为0.162,具有明显的遇水软化特性。淋水区巷道顶板围岩初期以静水压力破坏为主,遇水软化特性降低了裂隙结构面的力学性能,在静水压力作用下围岩裂隙的尺寸剪性扩张;后期以动水压力破坏为主,主要表现为裂隙结构面变形扩展、裂隙充填物位移、管涌等,顶板围岩破坏速度也逐步加快。结合巷道淋水顶板围岩由矿压显现变形和裂隙软化扩张发展到管涌冲刷破坏的全过程分析,按照顶板钻孔围岩破坏主要形式(物理软化、渗流破坏、吸蚀扩容破坏、冲刷变形破坏)划分为4个不同阶段,形成了以顶板钻孔围岩破坏主要形式、顶板锚索孔流水状态、顶板围岩裂隙发育特征和治水加固原则为关键指标的巷道淋水顶板破坏发展阶段判定准则。结合现场条件,确定了414106运输巷淋水区为淋水顶板破坏发展第Ⅲ阶段,提出了淋水区巷道顶板锚索封孔注浆(疏水)结构形式和“深孔疏水+浅部封水+深部加固+高预应力支护”原则,制定了淋水区巷道顶板高预紧力长锚索补强与封孔注浆相结合的锚封注一体化补强方案,通过现场工业性试验和矿压监测可知,达到顶板治水和围岩加固的效果。 展开更多
关键词 弱富水层 淋水顶板 水理试验 顶板结构失稳 锚封注一体化
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Numerical and theoretical verification of modified cam-clay model and discussion on its problems 被引量:1
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作者 戴自航 秦志忠 《Journal of Central South University》 SCIE EI CAS 2013年第11期3305-3313,共9页
Isotropic consolidation test and consolidated-undrained triaxial test were first undertaken to obtain the parameters of the modified cam-clay(MCC)model and the behavior of natural clayey soil.Then,for the first time,n... Isotropic consolidation test and consolidated-undrained triaxial test were first undertaken to obtain the parameters of the modified cam-clay(MCC)model and the behavior of natural clayey soil.Then,for the first time,numerical simulation of the two tests was performed by three-dimensional finite element method(FEM)using ABAQUS program.The consolidated-drained triaxial test was also simulated by FEM and compared with theoretical results of MCC model.Especially,the behaviors of MCC model during unloading and reloading were analyzed in detail by FEM.The analysis and comparison indicate that the MCC model is able to accurately describe many features of the mechanical behavior of the soil in isotropic consolidation test and consolidated-drained triaxial test.And the MCC model can well describe the variation of excess pore water pressure with the development of axial strain in consolidated-undrained triaxial test,but its ability to predict the relationship between axial strain and shear stress is relatively poor.The comparison also shows that FEM solutions of the MCC model are basically identical to the theoretical ones.In addition,Mandel-Cryer effect unable to be discovered by the conventional triaxial test in laboratories was disclosed by FEM.The analysis of unloading-reloading by FEM demonstrates that the MCC model disobeys the law of energy conservation under the cyclic loading condition if the elastic shear modulus is linearly pressure-dependent. 展开更多
关键词 modified cam-clay (MCC) model isotropic consolidation test consolidated-undrained triaxial test consolidated-drained triaxial test Mandel-Cryer effect energy conversation
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