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走滑断层黏滑错动下隧道破坏的模型试验研究 被引量:15
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作者 王鸿儒 钟紫蓝 +3 位作者 赵密 汪振 赵旭 杜修力 《北京工业大学学报》 CAS CSCD 北大核心 2021年第7期691-701,共11页
为了探究断层错动对隧道及围岩的损伤机理及破坏特性,以滇中引水工程香炉山隧洞为依托,通过开展隧道穿越断层破碎带的黏滑错动模型试验,并采用ABAQUS进行数值建模,对试验结果进行验证分析.研究结果表明:断层错动过程中,衬砌主要发生受... 为了探究断层错动对隧道及围岩的损伤机理及破坏特性,以滇中引水工程香炉山隧洞为依托,通过开展隧道穿越断层破碎带的黏滑错动模型试验,并采用ABAQUS进行数值建模,对试验结果进行验证分析.研究结果表明:断层错动过程中,衬砌主要发生受拉破坏,局部位置衬砌受压破坏;衬砌发生变形及破坏的区域,主要集中在破碎带范围内,以错动面处衬砌变形、破坏最为突出,衬砌的变形随距错动面距离的增大而减少,衬砌横断面内拱顶、右腰位置破坏最为严重;断层错动起始时刻,破碎带中间部位拱顶处衬砌拉损伤已经达到较高量级,衬砌局部开裂破坏,随着断层错动量的增加,损伤不断累积,当错动量达25 mm(相当于实际错动量1 m)时,衬砌整体损伤已累积到较高量级,此时衬砌的破坏接近试验的最终状况.岩体的破裂区域主要集中在距错动面两侧30 cm范围内,围岩变形随着距错动面距离的增加而逐渐减小. 展开更多
关键词 走滑断层 断层破碎带 模型试验 隧道破坏特性 山岭隧道 隧道抗震
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Model test to investigate failure mechanism and loading characteristics of shallow-bias tunnels with small clear distance 被引量:11
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作者 雷明锋 林大涌 +3 位作者 杨伟超 施成华 彭立敏 黄娟 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第12期3312-3321,共10页
Based on the similarity theory,a tunnel excavation simulation testing system under typical unsymmetrical loading conditions was established.Using this system,the failure mechanism of surrounding rock of shallow-bias t... Based on the similarity theory,a tunnel excavation simulation testing system under typical unsymmetrical loading conditions was established.Using this system,the failure mechanism of surrounding rock of shallow-bias tunnels with small clear distance was analyzed along with the load characteristics.The results show that:1) The failure process of surrounding rock of shallow-bias tunnels with small clear distance consists of structural and stratum deformation induced by tunnel excavation; Microfracture surfaces are formed in the tunnel surrounding rock and extend deep into the rock mass in a larger density; Tensile cracking occurs in shallow position on the deep-buried side,with shear slip in deep rock mass.In the meantime,rapid deformation and slip take place on the shallow-buried side until the surrounding rocks totally collapse.The production and development of micro-fracture surfaces in the tunnel surrounding rock and tensile cracking in the shallow position on the deep-buried side represent the key stages of failure.2) The final failure mode is featured by an inverted conical fracture with tunnel arch as its top and the slope at tunnel entrance slope as its bottom.The range of failure on the deep-buried side is significantly larger than that on the shallow-buried side.Such difference becomes more prominent with the increasing bias angle.What distinguishes it from the "linear fracture surface" model is that the model proposed has a larger fracture angle on the two sides.Moreover,the bottom of the fracture is located at the springing line of tunnel arch.3) The total vertical load increases with bias angle.Compared with the existing methods,the unsymmetrical loading effect in measurement is more prominent.At last,countermeasures are proposed according to the analysis results: during engineering process,1) The surrounding rock mass on the deep-buried side should be reinforced apart from the tunnel surrounding rock for shallow-buried tunnels with small clear distance; moreover,the scope of consolidation should go beyond the midline of tunnel(along the direction of the top of slope) by 4 excavation spans of single tunnel.2) It is necessary to modify the load value of shallow-bias tunnels with small clear distance. 展开更多
关键词 shallow-bias tunnels with small spacing failure mechanism loading characteristics model test
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