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Analytical solution of circular tunnel in elastic-viscoplastic rock mass

机译:弹黏塑性岩体中圆形隧道的解析解

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This paper deals with a deep circular tunnel excavated in infinite homogeneous and isotropic elasto-viscoplastic rock mass subjected to a hydrostatic initial stresses. The tunnel is divided into the initial plastic, viscoplastic, and elastic zones. By combining the generalized Bingham model with Mohr-Coulomb yield criteria, analytical solutions of the circular tunnel are derived with the consideration of non-associated flow rule and elasto-viscoplasticity. The initial plastic zone is defined as the instantaneous change of rock mass excavation. Based on the initial plastic zone, the stresses in viscoplastic zone are transferred to the deep surrounding rock with time due to the initial earth stresses. The results are compared with the elastic-brittle solution at static conditions, and the solutions of this paper are validated. Moreover, the presented results shows that the stress and displacement of the surrounding rock varies with time, and the solutions can be obtained at different instants of time.
机译:本文研究了一个深圆形隧道,该圆形隧道是在无限长的均质各向同性弹黏塑性岩体中承受静水初始应力而开挖的。隧道分为初始塑性区,粘塑性区和弹性区。通过将广义Bingham模型与Mohr-Coulomb屈服准则相结合,在考虑非关联流规则和弹黏塑性的情况下得出了圆形隧道的解析解。初始塑性区定义为岩体开挖的瞬时变化。在初始塑性区的基础上,由于初始土应力,粘塑性区中的应力随时间转移到深层围岩中。将结果与静态条件下的弹性脆性解进行比较,并对本文的解进行了验证。此外,所提出的结果表明,围岩的应力和位移随时间变化,并且可以在不同的时刻获得解。

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