Exploring Ground Behavior in Underground Excavations Under Squeezing Stress Conditions

سال انتشار: 1403
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 79

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شناسه ملی سند علمی:

JR_JMAE-15-4_004

تاریخ نمایه سازی: 17 شهریور 1403

چکیده مقاله:

The study examined the influence of cohesion, friction angle, and tunnel diameter on stability within engineering and geotechnical frameworks, while considering the consequences of nearby excavations on the overall stability assessment. The results show that a higher angle of internal friction leads to a decrease in soil stability number and weighting coefficient. Tunnel diameter significantly affects face support pressure, with larger diameters requiring stronger support due to increased stress. Higher friction angles help stabilize tunnel faces and mitigate diameter-related pressure effects. Stress redistribution around the tunnel is significant within ۲ meters from the center, transitioning to elastic behavior elsewhere. A safety factor of ۱.۳ ensures tensile failure prevention in single and twin tunnels. Balanced stress distribution between tunnels with a slight difference is observed under isotropic in-situ stress. Numerical modeling enhances stress estimations and reveals changes during tunnel excavation, weakening the rock mass. Ground reaction curve analysis with support measures shows reduced tunnel convergence after implementation, suggesting support strategies like extended bolts using updated rock mass rating. The study improves tunnel design and stability assessment by comprehensively understanding stress redistribution and support strategies.

نویسندگان

Naeem Abbas

Faculty of Land Resources Engineering, Kunming University of Science and Technology, Yunnan, China

Li Kegang

Department of Mining Engineering Karakoram International University (KIU), Gilgit, Pakistan

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  • . Rezaei, A.S., Sarfarzi, V., Babanouri,N., Omidimanesh,M., Jahanmiri, S., (۲۰۲۳). ...
  • . Wan, M., Standing, J.R., Potts, D.M., Burland, J.B., (۲۰۱۷). ...
  • . Luciani, A., and Peila, D., (۲۰۱۹). Tunnel Waterproofing: Available ...
  • . Wang, X., Jinxinget, L., He, S., Garnes, R.S., Zhang, ...
  • . Gong, C., Ding, W., Xie, D., (۲۰۲۰). Twin EPB ...
  • . Sarfarazi, V., (۲۰۲۰). Behavior of Tunnel and Neighboring Joint ...
  • . Doležalová, M.,(۲۰۰۱). Tunnel complex unloaded by a deep excavation. ...
  • . Sharma, J., Hefny, A.M.,Zhao, J., Chan, C.W., (۲۰۰۱). Effect ...
  • . Hu, Z., ( ۲۰۰۳). Design and construction of a ...
  • . Doležalová, M., (۲۰۰۱). Tunnel complex unloaded by a deep ...
  • . Sharma, J.S., (۲۰۰۱). Effect of large excavation on deformation ...
  • . Wang, W., Xu., Z. and Li., Q., (۲۰۱۸) Design ...
  • . Sarfarazi, V., Asgari, K., Abad, S.M.B., (۲۰۲۱). Interaction between ...
  • . Zhang, J.F., and Chen, J.J., (۲۰۱۳). Prediction of tunnel ...
  • . Athar, M.F., Zaid, M., Sadique, R., (۲۰۱۹). Stability of ...
  • . Luc Leroy, M., Ndop, J., Ndjaka, J., (۲۰۱۵). Numerical ...
  • . Fama, M.E.D., ۳ - Numerical Modeling of Yield Zones ...
  • . Kirsch, A.,(۲۰۱۰). Experimental investigation of the face stability of ...
  • . Hou, C., Zhong, J., Yang, X., (۲۰۲۳). Three-dimensional stability ...
  • . Ninić, J., (۲۰۲۰). Integrated parametric multi-level information and numerical ...
  • . Guan, K., (۲۰۱۸). A finite strain numerical procedure for ...
  • . Hoek, E., Diederichs, M.S.,(۲۰۰۶). Empirical estimation of rock mass ...
  • . Shiau, J., Al-Asadi, F.,(۲۰۲۰). Three-dimensional heading stability of twin ...
  • . Islam, M.S., Iskander, M.,(۲۰۲۳). Three-dimensional numerical investigation of ground ...
  • . Najm, S.J., Daraei, A.,(۲۰۲۳). Forecasting and controlling two main ...
  • . Chehade, F.H., Shahrour, I.,(۲۰۰۸). Numerical analysis of the interaction ...
  • . Liu, Z., et al., (۲۰۲۱). A simplified two-stage method ...
  • . Zheng, G., et al., (۲۰۲۳). Relating twin-tunnelling-induced settlement to ...
  • . Abbas, N., et al.,(۲۰۲۲). Correlation of Schmidt Hammer Rebound ...
  • . Zeng, G., Wang, H. Jiang, M.,(۲۰۲۳). Analytical stress and ...
  • . Shah, k.S., et al., (۲۰۲۳). Analysis of Granite Failure ...
  • . Bobet, A., (۲۰۱۰). Numerical methods in geomechanics. The Arabian ...
  • . Barpi, F., and Peila, D., (۲۰۱۲). Influence of the ...
  • . Alagha, A.S.N., and Chapman, D.N., (۲۰۱۹). Numerical modelling of ...
  • . Ye, Z., et al., (۲۰۲۳). A digital twin approach ...
  • . Zhang, H., et al., (۲۰۲۳). Stability evaluation of rock ...
  • . Islam, M.S., and Iskander, M., (۲۰۲۱). Twin tunnelling induced ...
  • . Leca, E., and Dormieux, L., (۱۹۹۰). Upper and lower ...
  • . Liu, K., et al., (۲۰۲۱). Tunnel face stability in ...
  • . Ads, A., Shariful Islam, M., Iskander, M., (۲۰۲۱). Effect ...
  • . Minh, N.V., (۲۰۱۶). Reducing the cover-to-diameter ratio for shallow ...
  • . Lai, F., et al., (۲۰۲۱). Ground movements induced by ...
  • . Chortis, F., and Kavvadas, M., (۲۰۲۱). Three-dimensional numerical investigation ...
  • . Abbas, N., et al., (۲۰۲۳). Empirical Evaluation of RMR, ...
  • . Bahri, M., et al., (۲۰۲۲). Numerical Model Validation for ...
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