The elastoplastic analysis of the surrounding rock of a circular tunnel is a very classic rock and soil mechanics problem. Previous scholars usually studied the situation under axisymmetric load, and they usually did not take the non-axisymmetric load distribution under the influence of ground stress and lateral pressure into account, which greatly affected its application in engineering practice. Approximate analytical solutions for calculating the plastic zone range, stress field and displacement field of the surrounding rock of a circular tunnel are inseparable from the consideration of the strength reduction and volumetric dilatancy characteristics of the rock material. The elastic-softening-residual plastic triple linear stress-strain model and the Mohr-Coulumb failure criterion are involved. The approximate analytical solutions of the residual stress field, strain field, displacement field and radius of the plastic zone in the elastic zone, plastic softening zone and surrounding plastic zone of the circular tunnel surrounding rock under axisymmetric load are deduced. The analytical solutions are valid only when the plastic zone is large and the lateral pressure coefficients 1≤λ<3. The approximate analytical method is close to the calculation result of finite element method and can replace the finite element method to carry out simple elastic-plastic analysis of surrounding rock.
Published in | American Journal of Civil Engineering (Volume 9, Issue 2) |
DOI | 10.11648/j.ajce.20210902.11 |
Page(s) | 31-38 |
Creative Commons |
This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited. |
Copyright |
Copyright © The Author(s), 2021. Published by Science Publishing Group |
Circular Tunnel, Asymmetrical Load, Strain Softening, Dilatancy, Elastoplastic Analysis
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APA Style
Zhang Xin, Zhang Xiangping, Wang Zhang, Lang Min, Zhao Suzhi, et al. (2021). Analytical Elastoplastic Solutions for Deep-buried Circular Tunnels Under Asymmetric Load. American Journal of Civil Engineering, 9(2), 31-38. https://doi.org/10.11648/j.ajce.20210902.11
ACS Style
Zhang Xin; Zhang Xiangping; Wang Zhang; Lang Min; Zhao Suzhi, et al. Analytical Elastoplastic Solutions for Deep-buried Circular Tunnels Under Asymmetric Load. Am. J. Civ. Eng. 2021, 9(2), 31-38. doi: 10.11648/j.ajce.20210902.11
AMA Style
Zhang Xin, Zhang Xiangping, Wang Zhang, Lang Min, Zhao Suzhi, et al. Analytical Elastoplastic Solutions for Deep-buried Circular Tunnels Under Asymmetric Load. Am J Civ Eng. 2021;9(2):31-38. doi: 10.11648/j.ajce.20210902.11
@article{10.11648/j.ajce.20210902.11, author = {Zhang Xin and Zhang Xiangping and Wang Zhang and Lang Min and Zhao Suzhi and Du Yuxiang and Sun Jinshan}, title = {Analytical Elastoplastic Solutions for Deep-buried Circular Tunnels Under Asymmetric Load}, journal = {American Journal of Civil Engineering}, volume = {9}, number = {2}, pages = {31-38}, doi = {10.11648/j.ajce.20210902.11}, url = {https://doi.org/10.11648/j.ajce.20210902.11}, eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.ajce.20210902.11}, abstract = {The elastoplastic analysis of the surrounding rock of a circular tunnel is a very classic rock and soil mechanics problem. Previous scholars usually studied the situation under axisymmetric load, and they usually did not take the non-axisymmetric load distribution under the influence of ground stress and lateral pressure into account, which greatly affected its application in engineering practice. Approximate analytical solutions for calculating the plastic zone range, stress field and displacement field of the surrounding rock of a circular tunnel are inseparable from the consideration of the strength reduction and volumetric dilatancy characteristics of the rock material. The elastic-softening-residual plastic triple linear stress-strain model and the Mohr-Coulumb failure criterion are involved. The approximate analytical solutions of the residual stress field, strain field, displacement field and radius of the plastic zone in the elastic zone, plastic softening zone and surrounding plastic zone of the circular tunnel surrounding rock under axisymmetric load are deduced. The analytical solutions are valid only when the plastic zone is large and the lateral pressure coefficients 1≤λ<3. The approximate analytical method is close to the calculation result of finite element method and can replace the finite element method to carry out simple elastic-plastic analysis of surrounding rock.}, year = {2021} }
TY - JOUR T1 - Analytical Elastoplastic Solutions for Deep-buried Circular Tunnels Under Asymmetric Load AU - Zhang Xin AU - Zhang Xiangping AU - Wang Zhang AU - Lang Min AU - Zhao Suzhi AU - Du Yuxiang AU - Sun Jinshan Y1 - 2021/04/12 PY - 2021 N1 - https://doi.org/10.11648/j.ajce.20210902.11 DO - 10.11648/j.ajce.20210902.11 T2 - American Journal of Civil Engineering JF - American Journal of Civil Engineering JO - American Journal of Civil Engineering SP - 31 EP - 38 PB - Science Publishing Group SN - 2330-8737 UR - https://doi.org/10.11648/j.ajce.20210902.11 AB - The elastoplastic analysis of the surrounding rock of a circular tunnel is a very classic rock and soil mechanics problem. Previous scholars usually studied the situation under axisymmetric load, and they usually did not take the non-axisymmetric load distribution under the influence of ground stress and lateral pressure into account, which greatly affected its application in engineering practice. Approximate analytical solutions for calculating the plastic zone range, stress field and displacement field of the surrounding rock of a circular tunnel are inseparable from the consideration of the strength reduction and volumetric dilatancy characteristics of the rock material. The elastic-softening-residual plastic triple linear stress-strain model and the Mohr-Coulumb failure criterion are involved. The approximate analytical solutions of the residual stress field, strain field, displacement field and radius of the plastic zone in the elastic zone, plastic softening zone and surrounding plastic zone of the circular tunnel surrounding rock under axisymmetric load are deduced. The analytical solutions are valid only when the plastic zone is large and the lateral pressure coefficients 1≤λ<3. The approximate analytical method is close to the calculation result of finite element method and can replace the finite element method to carry out simple elastic-plastic analysis of surrounding rock. VL - 9 IS - 2 ER -