Study of Tunnel Damage Caused by Underground Mining Deformation: Calculation, Analysis, and Reinforcement

Bayueshan tunnel (BYS) is an important construction crossing over coal mine goaf. The underground mining subsidence has led the tunnel cracked seriously in three years after it was built. In order to evaluate the coal mine influence and future stability of the tunnels, probability integral method (P...

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Main Authors: Peixian Li, Lili Yan, Dehua Yao
Format: Article
Language:English
Published: Hindawi Limited 2019-01-01
Series:Advances in Civil Engineering
Online Access:http://dx.doi.org/10.1155/2019/4865161
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spelling doaj-8604f88af8d3432993889d44dce49a002020-11-24T22:06:36ZengHindawi LimitedAdvances in Civil Engineering1687-80861687-80942019-01-01201910.1155/2019/48651614865161Study of Tunnel Damage Caused by Underground Mining Deformation: Calculation, Analysis, and ReinforcementPeixian Li0Lili Yan1Dehua Yao2China University of Mining and Technology (Beijing), Beijing, ChinaChina Center for Resources Satellite Data and Application, Beijing, ChinaChina Railway Fifth Survey and Design Institute Group CO.,LTD, Beijing, ChinaBayueshan tunnel (BYS) is an important construction crossing over coal mine goaf. The underground mining subsidence has led the tunnel cracked seriously in three years after it was built. In order to evaluate the coal mine influence and future stability of the tunnels, probability integral method (PIM) was used to calculate the tunnel deformation. PIM is an experience function method based on random medium theory which is used widely in China. With the parameters analyzed, the tunnels’ subsidence was calculated. The results show that it can interpret the tunnel damage well, and the maximum normal strain positions fit the damaged tunnel positions well. It proved that PIM can be used to evaluate the tunnel’s radial deformation caused by underground coal excavation. In order to maintain tunnels to keep a long-term stability, the future deformation was calculated in case the coal excavation continues. It shows that the tunnel would be cracked again if the excavation continued. Other reasons such as the old goaf deformation and water and vehicle dynamic load are also important reasons for the tunnels’ deformation. In order to keep traffic safety, it needs to reinforce the cracked foundation under the tunnel. Then, grouting injection was proposed to reduce the old goaf deformation under the tunnels. If the fracture zone under the tunnels disturbed by the dynamic traffic load, the old goaf will face a risk of sudden collapse. So, to ensure the grouting effect, the grouting depth should be deeper than the sum of traffic load influence depth and height of coal mine caved fissure zone. The grouting scope should keep all the crack rock area under the tunnel from being disturbed by the dynamic traffic load. This design can reduce the sudden collapse risk of the goaf and reduces the vehicles’ load disturbance on the cracked rock. The researched technology provides an engineering guidance to tunnel subsidence calculation, stability evaluation, and maintenance in complex geological and engineering situations.http://dx.doi.org/10.1155/2019/4865161
collection DOAJ
language English
format Article
sources DOAJ
author Peixian Li
Lili Yan
Dehua Yao
spellingShingle Peixian Li
Lili Yan
Dehua Yao
Study of Tunnel Damage Caused by Underground Mining Deformation: Calculation, Analysis, and Reinforcement
Advances in Civil Engineering
author_facet Peixian Li
Lili Yan
Dehua Yao
author_sort Peixian Li
title Study of Tunnel Damage Caused by Underground Mining Deformation: Calculation, Analysis, and Reinforcement
title_short Study of Tunnel Damage Caused by Underground Mining Deformation: Calculation, Analysis, and Reinforcement
title_full Study of Tunnel Damage Caused by Underground Mining Deformation: Calculation, Analysis, and Reinforcement
title_fullStr Study of Tunnel Damage Caused by Underground Mining Deformation: Calculation, Analysis, and Reinforcement
title_full_unstemmed Study of Tunnel Damage Caused by Underground Mining Deformation: Calculation, Analysis, and Reinforcement
title_sort study of tunnel damage caused by underground mining deformation: calculation, analysis, and reinforcement
publisher Hindawi Limited
series Advances in Civil Engineering
issn 1687-8086
1687-8094
publishDate 2019-01-01
description Bayueshan tunnel (BYS) is an important construction crossing over coal mine goaf. The underground mining subsidence has led the tunnel cracked seriously in three years after it was built. In order to evaluate the coal mine influence and future stability of the tunnels, probability integral method (PIM) was used to calculate the tunnel deformation. PIM is an experience function method based on random medium theory which is used widely in China. With the parameters analyzed, the tunnels’ subsidence was calculated. The results show that it can interpret the tunnel damage well, and the maximum normal strain positions fit the damaged tunnel positions well. It proved that PIM can be used to evaluate the tunnel’s radial deformation caused by underground coal excavation. In order to maintain tunnels to keep a long-term stability, the future deformation was calculated in case the coal excavation continues. It shows that the tunnel would be cracked again if the excavation continued. Other reasons such as the old goaf deformation and water and vehicle dynamic load are also important reasons for the tunnels’ deformation. In order to keep traffic safety, it needs to reinforce the cracked foundation under the tunnel. Then, grouting injection was proposed to reduce the old goaf deformation under the tunnels. If the fracture zone under the tunnels disturbed by the dynamic traffic load, the old goaf will face a risk of sudden collapse. So, to ensure the grouting effect, the grouting depth should be deeper than the sum of traffic load influence depth and height of coal mine caved fissure zone. The grouting scope should keep all the crack rock area under the tunnel from being disturbed by the dynamic traffic load. This design can reduce the sudden collapse risk of the goaf and reduces the vehicles’ load disturbance on the cracked rock. The researched technology provides an engineering guidance to tunnel subsidence calculation, stability evaluation, and maintenance in complex geological and engineering situations.
url http://dx.doi.org/10.1155/2019/4865161
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AT liliyan studyoftunneldamagecausedbyundergroundminingdeformationcalculationanalysisandreinforcement
AT dehuayao studyoftunneldamagecausedbyundergroundminingdeformationcalculationanalysisandreinforcement
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