首页> 外文期刊>Thin-Walled Structures >The influence of longitudinal crack on mechanical behavior of shield tunnel lining in soft-hard composite strata
【24h】

The influence of longitudinal crack on mechanical behavior of shield tunnel lining in soft-hard composite strata

机译:纵向裂缝对软硬复合地层盾构隧道衬砌力学性能的影响

获取原文
获取原文并翻译 | 示例

摘要

Concrete cracking is a common structural defect of segmentally lined tunnels. In this article, the tunnel between Shangteng station and Dadao station of Fuzhou metro line one, which mainly passes through the two-layered (sand and medium-weathered granite) composite strata, was taken as an example to study this issue. First, the cracking situation of segmental linings was investigated from on-site inspection and the cracking mechanism is revealed through numerical simulation. Then, similarity model tests were conducted to study the mechanical response of lining with a non-through longitudinal crack. Finally, a new numerical approach for cracked segment was put forward to analyze the mechanical behavior of lining with multi-cracks. The results show that: (1) Longitudinal cracks and corner cracks are the main cracking types of segment, and the difference in jacking thrusts determines the cracking patterns. (2) The influence of crack on inner force distribution along tunnel perimeter shows joint truncation effect and amplification effect of heterogeneous formation, and the influencing degree can be classified into three levels: serious effect, general effect and weak effect. (3) The failure process of lining has four distinct stages: elastic stage, initial damage stage, ultimate limit stage, and unstable stage. In addition, the pre-existing crack will develop along the longitudinal direction and be crushed under the action of external load in most cases. (4) The influence of multi-cracks on the inner forces of lining shows no coupling effect. In addition, the asymmetrically mechanical response of lining is affected by two factors: the difference in mechanical parameters of layered strata and the difference in stiffness of cracked and non-cracked sections. (5) The damage degree of crack, the depth of surcharged soil, and the proportion of soft soil in the tunnel section are the three main factors influencing the safety of lining.
机译:混凝土开裂是分段衬砌隧道的常见结构缺陷。本文以福州地铁一号线上腾站至大岛站之间的隧道为主要研究对象,该隧道主要通过两层(砂岩和中风化花岗岩)复合地层。首先,通过现场检查研究了分段衬砌的开裂情况,并通过数值模拟揭示了开裂机理。然后,进行了相似模型测试,以研究具有非贯通纵向裂纹的衬砌的机械响应。最后,提出了一种新的裂纹分段数值方法,以分析多裂纹衬砌的力学行为。结果表明:(1)纵向裂缝和角裂缝是主要的开裂类型,顶推力的差异决定了开裂方式。 (2)裂缝对隧道周边内力分布的影响表现为节理截断效应和非均质地层的放大效应,其影响程度可分为严重影响,一般影响和弱影响三个层次。 (3)衬砌的破坏过程分为四个阶段:弹性阶段,初始破坏阶段,极限极限阶段和不稳定阶段。此外,在大多数情况下,预先存在的裂纹会沿纵向方向发展并在外力作用下被压碎。 (4)多裂纹对衬砌内力的影响无耦合作用。此外,衬砌的非对称力学响应受两个因素的影响:层状地层的力学参数的差异以及破裂和非破裂部分的刚度差异。 (5)裂缝的破坏程度,超载土的深度和隧道断面的软土比例是影响衬砌安全性的三个主要因素。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号