A model test on an open-cut tunnel structure under the effect of a stick-slip normal fault

Zhiqiang Zhang, Xingyu Zhu, R. Wei
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引用次数: 1

Abstract

PurposeLarge displacement misalignment under the action of active faults can cause complex three-dimensional deformation in subway tunnels, resulting in severe damage, distortion and misalignment. There is no developed system of fortification and related codes to follow. There are scientific problems and technical challenges in this field that have never been encountered in past research and practices.Design/methodology/approachThis paper adopted a self-designed large-scale active fault dislocation simulation loading system to conduct a similar model test of the tunnel under active fault dislocation based on the open-cut tunnel project of the Urumqi Rail Transit Line 2, which passes through the Jiujiawan normal fault. The test simulated the subway tunnel passing through the normal fault, which is inclined at 60°. This research compared and analyzed the differences in mechanical behavior between two types of lining section: the open-cut double-line box tunnel and the modified double-line box arch tunnel. The structural response and failure characteristics of the open-cut segmented lining of the tunnel under the stick-slip part of the normal fault were studied.FindingsThe results indicated that the double-line box arch tunnel improved the shear and longitudinal bending performance. Longitudinal cracks were mainly distributed in the baseplate, wall foot and arch foot, and the crack position was basically consistent with the longitudinal distribution of surrounding rock pressure. This indicated that the longitudinal cracks were due to the large local load of the cross-section of the structure, leading to an excessive local bending moment of the structure, which resulted in large eccentric failure of the lining and formation of longitudinal cracks. Compared with the ordinary box section tunnel, the improved double-line box arch tunnel significantly reduced the destroyed and damage areas of the hanging wall and footwall. The damage area and crack length were reduced by 39 and 59.3%, respectively. This indicates that the improved double-line box arch tunnel had good anti-sliding performance.Originality/valueThis paper adopted a self-designed large-scale active fault dislocation simulation loading system to conduct a similar model test of the tunnel under active fault dislocation. This system increased the similarity ratio of the test model, improved the dislocation loading rate and optimized the simulation scheme of the segmented flexible lining and other key factors affecting the test. It is of great scientific significance and engineering value to investigate the structure of subway tunnels under active fault misalignment, to study its force characteristics and damage modes, and to provide a technical reserve for the design and construction of subway tunnels through active faults.
对正断层黏滑作用下的明切隧道结构进行了模型试验
目的活动断层作用下的大位移错位会引起地铁隧道复杂的三维变形,造成严重的破坏、变形和错位。没有发达的防御体系和相关规范可循。这一领域存在着过去研究和实践中从未遇到过的科学问题和技术挑战。设计/方法/途径本文以乌鲁木齐轨道交通2号线穿越九家湾正断层的明切隧道工程为背景,采用自行设计的大型活动断层位错模拟加载系统,对活动断层位错作用下的隧道进行了类似的模型试验。试验模拟了地铁隧道通过斜度为60°的正断层。对比分析了开凿双线箱形隧道和改进双线箱形拱隧道两种衬砌断面的力学性能差异。研究了正断层黏滑段下隧道开切分段衬砌的结构响应及破坏特征。结果表明,双线箱形拱隧道的抗剪和纵弯性能得到了改善。纵向裂缝主要分布在底板、墙脚和拱脚,裂缝位置与围岩压力纵向分布基本一致。这说明纵向裂缝的产生是由于结构截面局部荷载较大,导致结构局部弯矩过大,导致衬砌偏心破坏较大,形成纵向裂缝。与普通箱形断面隧道相比,改进双线箱形拱隧道的上、下盘破坏破坏面积明显减小。损伤面积和裂纹长度分别减少了39%和59.3%。这说明改进的双线箱形拱隧道具有良好的抗滑性能。本文采用自行设计的大型活动断层位错模拟加载系统,对活动断层位错作用下的隧道进行了类似的模型试验。该系统提高了试验模型的相似率,提高了位错加载率,优化了分段柔性衬砌的模拟方案等影响试验的关键因素。研究活动断层错位作用下的地铁隧道结构,研究其受力特征和破坏模式,为活动断层作用下地铁隧道的设计和施工提供技术储备,具有重要的科学意义和工程价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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