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典型文献
Numerical analysis of the influence of a river on tunnelling-induced ground deformation in soft soil
文献摘要:
When tunnels are constructed in coastal cities, they will inevitably undercross a river. Exploring the influence of rivers on tunnelling-induced deformation in costal soft soil is of great significance for controlling excessive settlement and protecting surrounding buildings. This paper presents a case study of twin tunnels undercrossing a river in soft soil in Hangzhou, China. The soft soil of Hangzhou refers to cohesive soil in a soft plastic or fluid plastic state with high natural water content, high compressibility, low bearing capacity, and low shear strength. Considering the influence of the river, the research region was divided into two parts, inside and outside the river-affected area, based on monitoring data of the Zizhi Tunnel. The development law of surface settlement is divided into three stages. In the first and second stages, the surface settlement within and outside the river-affected area showed a similar trend: the settlement increased and the growth rate of settlement in the second stage was smaller within the river-affected area. In the third stage, the surface settlement continued to increase within the river-affected area, while it converged outside the river-affected area. Within the river-affected area, there was an asynchronization of the sinking rate and stability of vault settlements and surface settlements. A numerical model was established by simulating different reinforcements of the tunnel. The numerical model revealed that the ground movement is influenced by the distribution and amount of the excess pore water pressure. The excess pore pressure was concentrated mostly in the range of 1.0Ht–3.0Ht (Ht is the tunnel height) before the tunnel face, especially within the river-affected area. Inside the river-affected area, the dissipation of excess pore water pressure needs more time, leading to slow stabilization of surface settlement. When undercrossing a river, a cofferdam is necessary to reduce excessive ground deformation by dispersing the distribution of excess pore water pressure.
文献关键词:
作者姓名:
Jia-xin LIANG;Xiao-wu TANG;Tian-qi WANG;Yu-hang YE;Ying-jing LIU
作者机构:
Research Center of Coastal and Urban Geotechnical Engineering,Department of Civil Engineering,Zhejiang University,Hangzhou 310058,China;Engineering Research Center of Urban Underground Space Development of Zhejiang Province,Hangzhou 310058,China;Zhongtian Construction Group Co.,Ltd.,Hangzhou 310020,China
引用格式:
[1]Jia-xin LIANG;Xiao-wu TANG;Tian-qi WANG;Yu-hang YE;Ying-jing LIU-.Numerical analysis of the influence of a river on tunnelling-induced ground deformation in soft soil)[J].浙江大学学报(英文版)(A辑:应用物理和工程),2022(07):564-578
A类:
undercross,undercrossing,Zizhi,asynchronization,0Ht,cofferdam
B类:
Numerical,analysis,tunnelling,induced,ground,deformation,soft,soil,When,tunnels,constructed,coastal,cities,they,will,inevitably,Exploring,rivers,costal,great,significance,controlling,excessive,protecting,surrounding,buildings,This,paper,presents,case,study,twin,Hangzhou,China,refers,cohesive,plastic,fluid,state,high,natural,water,content,compressibility,bearing,capacity,shear,strength,Considering,research,region,was,divided,into,two,parts,inside,outside,affected,area,monitoring,data,Tunnel,development,law,surface,three,stages,first,second,within,showed,similar,trend,increased,growth,smaller,third,continued,while,converged,Within,there,sinking,stability,vault,settlements,numerical,model,established,by,simulating,different,reinforcements,revealed,that,movement,influenced,distribution,amount,pore,pressure,concentrated,mostly,range,height,before,especially,Inside,dissipation,needs,more,leading,slow,stabilization,necessary,reduce,dispersing
AB值:
0.416436
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