非对称荷载作用下深埋圆形隧道的弹塑性解析解

Zhang Xin, Zhang Xiangping, Wang Zhang, Lang Min, Zhao Suzhi, Duan Yuxiang, Sun Jinshan
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引用次数: 0

摘要

圆形隧道围岩弹塑性分析是一个非常经典的岩土力学问题。以往的学者通常研究轴对称荷载下的情况,通常没有考虑地应力和侧压力影响下的非轴对称荷载分布,这极大地影响了其在工程实践中的应用。计算圆形隧道围岩塑性区范围、应力场和位移场的近似解析解离不开考虑岩石材料的强度折减和体积剪胀特性。采用了弹性-软化-残余塑性三线性应力-应变模型和莫尔-库仑破坏准则。推导了轴对称荷载作用下圆形隧道围岩弹性区、塑性软化区及周边塑性区残余应力场、应变场、位移场及塑性区半径的近似解析解。只有当塑性区较大且侧压力系数1≤λ<3时,解析解才有效。近似解析法与有限元法的计算结果接近,可以代替有限元法进行简单的围岩弹塑性分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analytical Elastoplastic Solutions for Deep-buried Circular Tunnels Under Asymmetric Load
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.
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