An analysis of interaction of deep buried close approaching multi-line parallel shield tunneling

Construction of a second shield tunnel in shallow soft strata may reduce the safety of the first shield tunnel, especially when the clear spacing is very small. However, in the case of deep burial, the deformation of the first tunnel becomes complicated due to the complexity and uncertainty of the u...

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Main Authors: Zhao FU, Ningjing KE, Kangming LU, Xiaoyang GUO, Mengxi ZHANG
Format: Article
Language:zho
Published: Editorial Office of Hydrogeology & Engineering Geology 2021-03-01
Series:Shuiwen dizhi gongcheng dizhi
Subjects:
Online Access:https://www.swdzgcdz.com/en/article/doi/10.16030/j.cnki.issn.1000-3665.202006009
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author Zhao FU
Ningjing KE
Kangming LU
Xiaoyang GUO
Mengxi ZHANG
author_facet Zhao FU
Ningjing KE
Kangming LU
Xiaoyang GUO
Mengxi ZHANG
author_sort Zhao FU
collection DOAJ
description Construction of a second shield tunnel in shallow soft strata may reduce the safety of the first shield tunnel, especially when the clear spacing is very small. However, in the case of deep burial, the deformation of the first tunnel becomes complicated due to the complexity and uncertainty of the underground soil layer. With the shield tunnel of hard X-ray civil construction in Shanghai as the background, combined with finite element numerical simulation, the mutual influence during the construction of the deep-buried shield tunnels with small clear spacing is analyzed, and the sensitivity analysis of different shield parameters is carried out. The research results show that with the excavation of the later tunnel, the deformation increment of the first tunnel segment is basically bimodal. When the left-right- middle method is used, the deformation increment of the segment is of a big and a small bimodal distribution. In the middle-right-left method, the peak value of the vertical deformation increment is the same in size and direction, while the horizontal is the same in different directions. With the increase in the elastic modulus of grouting, the vertical deformation increment of the segment changes greatly, while the horizontal deformation increment is basically unchanged. When the pushing force increases, the deformation of the segment increases, and it reaches a stability when the supporting stress ratio is between 0.6-0.7. The existence of groundwater has a certain effect on the vertical deformation of the segment. By comparing the deformation convergence of the two excavation methods, the left-right-middle sequence of excavation is finally selected.
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spelling doaj.art-de27166bef8e489683f1a93ee095d3a12023-02-08T01:30:07ZzhoEditorial Office of Hydrogeology & Engineering GeologyShuiwen dizhi gongcheng dizhi1000-36652021-03-01482445410.16030/j.cnki.issn.1000-3665.202006009202006009An analysis of interaction of deep buried close approaching multi-line parallel shield tunnelingZhao FU0Ningjing KE1Kangming LU2Xiaoyang GUO3Mengxi ZHANG4Department of Civil Engineering, Shanghai University, Shanghai 200072, ChinaShield Engineering Branch of Shanghai Tunnel Engineering Co. Ltd., Shanghai 200092, ChinaShield Engineering Branch of Shanghai Tunnel Engineering Co. Ltd., Shanghai 200092, ChinaShield Engineering Branch of Shanghai Tunnel Engineering Co. Ltd., Shanghai 200092, ChinaDepartment of Civil Engineering, Shanghai University, Shanghai 200072, ChinaConstruction of a second shield tunnel in shallow soft strata may reduce the safety of the first shield tunnel, especially when the clear spacing is very small. However, in the case of deep burial, the deformation of the first tunnel becomes complicated due to the complexity and uncertainty of the underground soil layer. With the shield tunnel of hard X-ray civil construction in Shanghai as the background, combined with finite element numerical simulation, the mutual influence during the construction of the deep-buried shield tunnels with small clear spacing is analyzed, and the sensitivity analysis of different shield parameters is carried out. The research results show that with the excavation of the later tunnel, the deformation increment of the first tunnel segment is basically bimodal. When the left-right- middle method is used, the deformation increment of the segment is of a big and a small bimodal distribution. In the middle-right-left method, the peak value of the vertical deformation increment is the same in size and direction, while the horizontal is the same in different directions. With the increase in the elastic modulus of grouting, the vertical deformation increment of the segment changes greatly, while the horizontal deformation increment is basically unchanged. When the pushing force increases, the deformation of the segment increases, and it reaches a stability when the supporting stress ratio is between 0.6-0.7. The existence of groundwater has a certain effect on the vertical deformation of the segment. By comparing the deformation convergence of the two excavation methods, the left-right-middle sequence of excavation is finally selected.https://www.swdzgcdz.com/en/article/doi/10.16030/j.cnki.issn.1000-3665.202006009deep buriedsmall spacingmulti-line parallel shieldnumerical simulationsegment deformationsection convergence
spellingShingle Zhao FU
Ningjing KE
Kangming LU
Xiaoyang GUO
Mengxi ZHANG
An analysis of interaction of deep buried close approaching multi-line parallel shield tunneling
Shuiwen dizhi gongcheng dizhi
deep buried
small spacing
multi-line parallel shield
numerical simulation
segment deformation
section convergence
title An analysis of interaction of deep buried close approaching multi-line parallel shield tunneling
title_full An analysis of interaction of deep buried close approaching multi-line parallel shield tunneling
title_fullStr An analysis of interaction of deep buried close approaching multi-line parallel shield tunneling
title_full_unstemmed An analysis of interaction of deep buried close approaching multi-line parallel shield tunneling
title_short An analysis of interaction of deep buried close approaching multi-line parallel shield tunneling
title_sort analysis of interaction of deep buried close approaching multi line parallel shield tunneling
topic deep buried
small spacing
multi-line parallel shield
numerical simulation
segment deformation
section convergence
url https://www.swdzgcdz.com/en/article/doi/10.16030/j.cnki.issn.1000-3665.202006009
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