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浅埋偏压小净距隧道大型振动台实验研究 被引量:8
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作者 江学良 连鹏远 +2 位作者 杨慧 王飞飞 牛家永 《应用力学学报》 CSCD 北大核心 2017年第3期456-463,共8页
浅埋偏压小净距隧道具有与其它形式隧道不同的受力特点,其地震响应特性也必然不同于其它隧道。基于相似理论设计并完成了浅埋偏压小净距隧道大型振动台模型实验,研究了小净距隧道分别在X(水平)向、Z(竖直)向、XZ双向(水平竖直同时输入)... 浅埋偏压小净距隧道具有与其它形式隧道不同的受力特点,其地震响应特性也必然不同于其它隧道。基于相似理论设计并完成了浅埋偏压小净距隧道大型振动台模型实验,研究了小净距隧道分别在X(水平)向、Z(竖直)向、XZ双向(水平竖直同时输入)多种工况汶川地震波作用下隧道衬砌加速度和动应变响应规律。实验结果表明:(1)衬砌加速度受地震波的入射方向影响较大,且Z向的影响大于X向,XZ双向的影响大于单向,左洞隧道的加速度响应大于右洞隧道;(2)衬砌应变受地震烈度的影响较大,隧道衬砌在地震作用下承受拉压循环荷载,以受拉为主,右洞隧道衬砌的动应变响应大于左洞隧道;(3)综合衬砌加速度与动应变的响应分析,左洞隧道的左半部分和右洞隧道的拱脚是隧道衬砌在地震作用下容易发生损坏的部位,在进行设计配筋时应特别注意。对于浅埋偏压小净距隧道衬砌进行抗震设计计算时,应考虑Z向地震的影响。研究成果可为浅埋偏压小净距隧道工程的抗震设计提供参考。 展开更多
关键词 浅埋偏压小净距隧道 振动台模型实验 加速度响应 动应变响应
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小净距隧道洞口段围岩变形与坡体稳定性分析 被引量:15
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作者 宋洋 常泳涛 +1 位作者 李永启 刘金明 《辽宁工程技术大学学报(自然科学版)》 CAS 北大核心 2020年第1期24-33,共10页
针对浅埋小净距隧道洞口段施工围岩-边坡地形偏压影响及施工过程中的危险施工步问题,引用强度折减法为依据,建立浅埋偏压小净距隧道的仿真模型计算隧道安全系数,并结合现场监测数据对比分析隧道稳定性,结果表明:隧道开挖会使边坡滑移范... 针对浅埋小净距隧道洞口段施工围岩-边坡地形偏压影响及施工过程中的危险施工步问题,引用强度折减法为依据,建立浅埋偏压小净距隧道的仿真模型计算隧道安全系数,并结合现场监测数据对比分析隧道稳定性,结果表明:隧道开挖会使边坡滑移范围向坡顶和坡脚扩展,滑体在隧道中夹岩处分流,使先行洞以扩张形变为主后行洞以压缩形变为主;先行洞内侧上部、外侧上部开挖及后行洞核心土弧形导坑开挖为围岩扰动相对较大施工步,中夹岩、左洞左拱脚与右洞右拱腰为小净距隧道围岩最危险部位,应针对工程实际偏压情况加强支护措施.上半断面的开挖过程造成的围岩扰动大于下半段面. 展开更多
关键词 浅埋偏压小净距隧道 洞口段 围岩变形 边坡稳定性 对策
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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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