Numerical Simulation on Large Deformation of Weak Rock Mass Tunnel Under High Geostress
The problem about the stability of tunnel surrounding rock is always an important research object of geotechnical engineering, and the right or wrong of the result from stability analysis on surrounding rock is related to success or failure of an underground project. In order to study the deformatio...
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2018-01-01
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Online Access: | https://doi.org/10.1051/matecconf/201817503025 |
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doaj-bc2b792270344b369e8aa8bf5e400cc32021-02-02T08:51:23ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011750302510.1051/matecconf/201817503025matecconf_ifcae-iot2018_03025Numerical Simulation on Large Deformation of Weak Rock Mass Tunnel Under High GeostressZhou FengJiang HongjianWang XiaoruiThe problem about the stability of tunnel surrounding rock is always an important research object of geotechnical engineering, and the right or wrong of the result from stability analysis on surrounding rock is related to success or failure of an underground project. In order to study the deformation rules of weak surrounding rock along with lateral pressure coefficient and burying depth varying under high geostress and discuss the dynamic variation trend of surrounding rock, the paper based on the application of finite difference software of FLAC3D, which can describe large deformation character of rock mass, analog simulation analysis of surrounding rock typical section of the class II was proceeded. Some conclusions were drawn as follows: (1) when burying depth is invariable, the displacements of tunnel surrounding rock have a trend of increasing first and then decreasing along with increasing of lateral pressure coefficient. The floor heave is the most sensitive to change of lateral pressure coefficient. The horizontal convergence takes second place. The vault subsidence is feeblish to change of lateral pressure coefficient. (2) The displacements of tunnel surrounding rock have some extend increase along with increasing of burying depth. The research conclusions are very effective in analyzing the stability of surrounding rock of Yunling tunnel. These are going to be a reference to tunnel supporting design and construction.https://doi.org/10.1051/matecconf/201817503025 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Zhou Feng Jiang Hongjian Wang Xiaorui |
spellingShingle |
Zhou Feng Jiang Hongjian Wang Xiaorui Numerical Simulation on Large Deformation of Weak Rock Mass Tunnel Under High Geostress MATEC Web of Conferences |
author_facet |
Zhou Feng Jiang Hongjian Wang Xiaorui |
author_sort |
Zhou Feng |
title |
Numerical Simulation on Large Deformation of Weak Rock Mass Tunnel Under High Geostress |
title_short |
Numerical Simulation on Large Deformation of Weak Rock Mass Tunnel Under High Geostress |
title_full |
Numerical Simulation on Large Deformation of Weak Rock Mass Tunnel Under High Geostress |
title_fullStr |
Numerical Simulation on Large Deformation of Weak Rock Mass Tunnel Under High Geostress |
title_full_unstemmed |
Numerical Simulation on Large Deformation of Weak Rock Mass Tunnel Under High Geostress |
title_sort |
numerical simulation on large deformation of weak rock mass tunnel under high geostress |
publisher |
EDP Sciences |
series |
MATEC Web of Conferences |
issn |
2261-236X |
publishDate |
2018-01-01 |
description |
The problem about the stability of tunnel surrounding rock is always an important research object of geotechnical engineering, and the right or wrong of the result from stability analysis on surrounding rock is related to success or failure of an underground project. In order to study the deformation rules of weak surrounding rock along with lateral pressure coefficient and burying depth varying under high geostress and discuss the dynamic variation trend of surrounding rock, the paper based on the application of finite difference software of FLAC3D, which can describe large deformation character of rock mass, analog simulation analysis of surrounding rock typical section of the class II was proceeded. Some conclusions were drawn as follows: (1) when burying depth is invariable, the displacements of tunnel surrounding rock have a trend of increasing first and then decreasing along with increasing of lateral pressure coefficient. The floor heave is the most sensitive to change of lateral pressure coefficient. The horizontal convergence takes second place. The vault subsidence is feeblish to change of lateral pressure coefficient. (2) The displacements of tunnel surrounding rock have some extend increase along with increasing of burying depth. The research conclusions are very effective in analyzing the stability of surrounding rock of Yunling tunnel. These are going to be a reference to tunnel supporting design and construction. |
url |
https://doi.org/10.1051/matecconf/201817503025 |
work_keys_str_mv |
AT zhoufeng numericalsimulationonlargedeformationofweakrockmasstunnelunderhighgeostress AT jianghongjian numericalsimulationonlargedeformationofweakrockmasstunnelunderhighgeostress AT wangxiaorui numericalsimulationonlargedeformationofweakrockmasstunnelunderhighgeostress |
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