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Critical state analysis of instability of shield tunnel segment lining

机译:盾构隧道管片衬砌失稳的临界状态分析

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The prevention and treatment of disease in an underwater shield tunnel segmental lining structure is a recognized issue. It is obvious that the mechanism of damage and instability of the segmental lining structure has a strong guiding significance for the scientific management of diseases. In this paper, the study on the progressive instability and failure process of the large-diameter underwater shield tunnel segmental lining structure from microscopic damage of the material to overall instability of the structure is carried out by model test method. The progressive failure process is divided into three stages: initial elastic phase, local damage phase and overall instability failure phase. The concept of the critical instability state of the segmental lining structure is put up and the method how to determine the correct critical instability point is given. And the influences of the assembly method, the position of the capping block, the lateral pressure coefficient of the stratum and the amount of water pressure on the deformation characteristics and the critical instability state of the segmental lining structure are respectively analyzed. The results show that (1) compared with the structure with seam-assembled segments, the structure with staggered assembled segments has a larger instability start load, and its displacement convergence value and ellipticity are smaller. The structure with staggered assembly segments has a higher bearing capacity; (2) for the structure with staggered assembled segment, the ultimate bearing capacity of the capping block at vault is smaller than that of the capping block at left haunch, and it is not advisable to place the capping block at vau (3) the high water pressure and high lateral pressure coefficient within a certain range can improve the bearing capacity of the segmental lining structure.
机译:水下盾构隧道分段衬砌结构中疾病的预防和治疗是公认的问题。显然,节段衬砌结构的破坏和失稳机理对疾病的科学管理具有很强的指导意义。本文通过模型试验方法研究了大直径水下盾构隧道分段衬砌结构从材料的微观损伤到结构整体失稳的渐进失稳和破坏过程。渐进式破坏过程分为三个阶段:初始弹性阶段,局部破坏阶段和整体失稳破坏阶段。提出了分段衬砌结构的临界失稳状态的概念,给出了确定正确的临界失稳点的方法。分别分析了组装方法,封盖位置,地层侧向压力系数和水压大小对分段衬砌结构的变形特性和临界失稳状态的影响。结果表明:(1)与缝拼装节段相比,错开拼装节段具有较大的失稳起始载荷,位移收敛值和椭圆度较小。装配段交错的结构具有较高的承载能力; (2)对于分段组装的结构,拱顶处的盖块的极限承载力小于左腰部的盖块的极限承载力,不建议将盖块放置在拱顶上。 (3)一定范围内的高水压和高侧向压力系数可以提高分段衬砌结构的承载力。

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