Title :
3D numerical modulate analysis on metro overlapped tunnels
Author :
Xin, Wang ; Qinghe, Zhang ; Li, Xiao ; Xiaobing, Liu
Author_Institution :
Dept. of Geotechnical Eng., Tongji Univ., Shanghai, China
Abstract :
Based on the interval tunnels between Fenghuang Xincun and Sha Yuan metro stations in Guangzhou City, the construction effects of the overlapped tunnels are researched. 3D Finite Element Method is also adopted. The distribution of stratum deformation and crown raising displacement of the lower tunnel are analyzed. Axial force, moment and stress changing of the overlapped tunnels during the different construction stages are discussed. The results show us that: the ground surface settlement trough of the overlapped tunnels is symmetrical; the crown raising displacement of the lower tunnel caused by the construction of the up tunnel is about 4~6mm, and the total crown settlement is to decrease nearly 50% after the construction of the up tunnel; the changing of the inner force caused by the excavation is more complicated during the different construction stages, and the excavation of the up tunnel can obviously impact the lower tunnel that has already built, the adverse impact region locates in front of the working face 15m and back of that 20m. The conclusion is that lining inner force of the overlapped tunnel is favorable and endurable by the external load during the construction stage, and such design concept also can meet the requirement of the underground space´s sustainable development and utilization.
Keywords :
construction; deformation; finite element analysis; impact (mechanical); stress analysis; tunnels; 3D finite element method; 3D numerical modulate analysis; Fenghuang Xincun metro station; Guangzhou City; Sha Yuan metro station; adverse impact region; axial force; construction effects; crown settlement; crown-raising displacement; design concept; excavation; ground surface settlement; lining inner force; metro overlapped tunnels; stratum deformation distribution; stress; underground space sustainable development; Finite element methods; Force; Numerical simulation; Rocks; Stress; Three dimensional displays; Tunneling; lining inner force variation; monitoring measurement; numerical simulation; overlapped tunnels; stratum settlement;
Conference_Titel :
Electric Technology and Civil Engineering (ICETCE), 2011 International Conference on
Conference_Location :
Lushan
Print_ISBN :
978-1-4577-0289-1
DOI :
10.1109/ICETCE.2011.5776025