期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Analytical solution for evaluating deformation response of existing metro tunnel due to excavation of adjacent foundation pit 被引量:6
1
作者 QIU Ju-tao JIANG Jie +2 位作者 ZHOU Xiao-jun ZHANG Yue-feng pan ying-dong 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第6期1888-1900,共13页
The excavation of foundation pit generates soil deformation around existing metro tunnel with shield driving method,which may lead to the deformation of tunnel lining.It is a challenge to evaluate the deformation of s... The excavation of foundation pit generates soil deformation around existing metro tunnel with shield driving method,which may lead to the deformation of tunnel lining.It is a challenge to evaluate the deformation of shield tunnel accurately and take measures to reduce the tunnel upward displacement as much as possible for geotechnical engineers.A new simplified analytical method is proposed to predict the longitudinal deformation of existing metro tunnel due to excavation unloading of adjacent foundation pit in this paper.Firstly,the additional stress of soils under vertical axisymmetric load in layered soil is obtained by using elastic multi-layer theory.Secondly,the metro tunnel is regarded as a Timoshenko beam supported by Winkler foundation so that the shear effect of tunnels can be taken into account.The additional stress acting on the tunnel due to excavation unloading in layered soil are compared with that in homogeneous soil.Additionally,the effectiveness of the analytical solution is verified via two actual cases.Moreover,parametric analysis is conducted to investigate the responses of the metro tunnel by considering such factors as the variation of subgrade coefficient,offset distance from the excavation center to tunnel longitudinal axis as well as equivalent shear stiffness.The proposed method can be used to provide theoretical basis for similar engineering project. 展开更多
关键词 metro tunnel simplified analytical method additional stress Timoshenko beam Winkler foundation
下载PDF
特大断面泥质软岩隧道浅埋段施工力学特征及工法适应性分析 被引量:2
2
作者 林锋 陶家清 +3 位作者 高恒潮 张洋语 潘英东 王峰 《公路》 北大核心 2022年第12期388-396,共9页
以龙泉山一号特大断面泥质软岩隧道浅埋段为工程背景,首先采用现场监控量测的方法对两个试验断面支护结构变形数据进行分析,再通过数值计算的方法与现场监测数据进行对比,验证了所采用计算参数的合理性,同时对双侧壁导坑法和CD法施工时... 以龙泉山一号特大断面泥质软岩隧道浅埋段为工程背景,首先采用现场监控量测的方法对两个试验断面支护结构变形数据进行分析,再通过数值计算的方法与现场监测数据进行对比,验证了所采用计算参数的合理性,同时对双侧壁导坑法和CD法施工时隧道支护结构受力及变形特征展开深入研究,进一步分析CD法的适应性。研究结果表明:CD法拱顶沉降和断面水平收敛分别为37.8 mm和42.1 mm,较双侧壁导坑法分别增大5.6 mm和11.1 mm,但仍小于控制变形量;两工法支护结构拉应力均主要集中分布在仰拱,其中最大拉应力在仰拱左侧,隧道左拱腰和左拱肩压应力较大;CD法初期支护最大拉应力和最大压应力分别为2.33 MPa和10.74 MPa,较双侧壁分别增大1.87 MPa和3.21 MPa, CD法锚杆最大轴力达到64.5 kN,比双侧壁导坑法减小20.7 kN;两工法塑性区主要位于两侧拱肩及拱脚位置,CD法塑性区面积相较于双侧壁导坑法增大。根据二者工法对比,CD法能够满足施工安全要求,同时可为类似工程提供参考。 展开更多
关键词 隧道工程 特大断面 施工力学 双侧壁导坑法 CD法 泥质软岩
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部