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Progressive failure process of secondary lining of a tunnel under creep effect of surrounding rock

机译:围岩蠕变效应下隧道次衬的渐进破坏过程

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摘要

During the operation of tunnels, a problem that is encountered often is the cracking of secondary lining caused by the time-dependent deformation of weak surrounding rocks. In this article, the Dujia mountain tunnel, which is situated in a weak and crushing phyllite stratum, was taken as an example to study this issue. First, we conducted a field investigation of the cracking situation of the secondary lining. Then, the similarity model test and particle-discrete-element numerical approach were used to study the failure process of the secondary lining. The results showed that the similarity model test and the results of numerical simulation were consistent with respect to the order in which cracks occurred and the final failure pattern. The progressive failure process can be divided into four stages, i.e., (1) the elastic stage, (2) the initial damage stage, (3) the ultimate limit stage, and (4) the instability stage. For a lateral pressure coefficient (lambda) 1, cracks initially appeared at the left haunch, the right haunch, and the spandrel due to bending damage caused by large-eccentricity compression. For lambda = 1, cracks appeared first at the left arch springing because of the compressive and shear damage. For lambda 1, the bending damage first occurred at the spandrel. For the secondary lining with pre-existing cracks, micro-cracks were first generated where pre-existing cracks initially existed, and one or two hinges appeared at the location of the pre-existing cracks when the structure was in its ultimate limit stage. A void behind lining influenced the cracking pattern of the secondary lining in three different ways, i.e., (1) no effect; (2) the order in which cracks emerged was affected, but the final fracture pattern was not; and (3) the order in which cracks emerged and the final fracture pattern were affected.
机译:在隧道运营过程中,经常遇到的问题是由弱围岩随时间变化引起的二次衬砌开裂。本文以软弱破碎的千枚岩地层中的杜家山隧道为例进行研究。首先,我们对次衬的开裂情况进行了实地调查。然后,利用相似性模型试验和颗粒离散元数值方法研究了二次衬砌的破坏过程。结果表明,相似模型测试和数值模拟结果在裂纹发生的顺序和最终的破坏模式方面是一致的。渐进式破坏过程可分为四个阶段,即(1)弹性阶段,(2)初始破坏阶段,(3)极限极限阶段和(4)不稳定阶段。当侧向压力系数(λ)> 1时,由于大偏心率压缩引起的弯曲损伤,裂纹最初出现在左腰部,右腰部和the骨上。对于λ= 1,由于压缩和剪切损伤,裂纹首先出现在左拱形弹簧上。对于lambda <1,弯曲损坏首先发生在跨度上。对于具有预先存在的裂纹的次生衬里,首先在最初存在预先存在的裂纹的地方产生微裂纹,当结构处于极限极限阶段时,在先前存在的裂纹的位置出现一个或两个铰链。衬里后面的空隙以三种不同的方式影响了次级衬里的开裂模式,即:(1)没有影响; (2)裂纹的出现顺序受到影响,但最终的断裂方式没有受到影响; (3)裂纹出现的顺序和最终的断裂方式受到影响。

著录项

  • 来源
    《Tunnelling and underground space technology》 |2019年第8期|76-98|共23页
  • 作者单位

    Southwest Jiaotong Univ, Minist Educ, Key Lab Transportat Tunnel Engn, Chengdu 610031, Sichuan, Peoples R China;

    Southwest Jiaotong Univ, Minist Educ, Key Lab Transportat Tunnel Engn, Chengdu 610031, Sichuan, Peoples R China;

    Southwest Jiaotong Univ, Minist Educ, Key Lab Transportat Tunnel Engn, Chengdu 610031, Sichuan, Peoples R China;

    Southwest Jiaotong Univ, Minist Educ, Key Lab Transportat Tunnel Engn, Chengdu 610031, Sichuan, Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Creep; Secondary lining; Progressive failure; Discrete element method;

    机译:蠕变;二次衬里;渐进破坏;离散元法;

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