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软弱围岩浅埋超大断面隧道支护力学响应分析及围岩压力计算方法

Support mechanical response analysis and surrounding rock pressure calculation method for a shallow buried super large section tunnel in weak surrounding rock.

作者信息

Lai Haixiang, Wang Xiuying, Tan Zhongsheng, Zhao Jinpeng, Liu Xiabing

机构信息

Key Laboratory of Urban Underground Engineering of Ministry of Education, Beijing Jiaotong University, Beijing, 100044, China.

School of Civil Engineering, Beijing Jiaotong University, Beijing, 100044, China.

出版信息

Sci Rep. 2024 Jun 12;14(1):13593. doi: 10.1038/s41598-024-64522-6.

Abstract

At present, China's demand for high-speed railway construction is constantly increasing, and the construction of Multi line high-speed railway tunnels has been put on the agenda. The design and construction issues of super-large-sections tunnels urgently need to be addressed. The Xiabei mountain No. 1 and No. 2 tunnels in the Hangzhou-Taizhou Railway are typical shallow-buried super-large-section-tunnels in weak surrounding rock, and their design and construction issues are representative. Eleven monitoring sections were set up in the tunnel, including tunnel deformation, surrounding rock, shotcrete, steel frames, bolts and temporary support mechanical responses. Taking the monitoring data of the most typical cross-section as an example, the mechanical response of the support structure of a shallow-buried super-large-section tunnel was analyzed in detail. Based on previous research results, this paper discusses and summarizes the common construction problems of this type of tunnel, and puts forward corresponding suggestions. The existing formula for calculating surrounding rock pressure has poor applicability to super-large-section tunnels constructed by step excavation, resulting in conservative support parameters. Therefore, based on the monitoring values of surrounding rock pressure at 10 monitoring sections in Xiabei mountain No. 1 and No. 2 tunnels, empirical parameters reflecting the impact of step excavation were summarized. Based on the Wang formula and combined with the step excavation empirical parameters, an empirical formula for the surrounding rock pressure of shallow-buried super-large-section tunnels considering step excavation was constructed. The calculated results are in good agreement with the on-site monitoring data. This study can provide a good reference for similar projects.

摘要

目前,我国对高速铁路建设的需求不断增加,多线高速铁路隧道建设已提上日程。超大断面隧道的设计与施工问题亟待解决。杭台铁路下北山1号和2号隧道是典型的软弱围岩浅埋超大断面隧道,其设计与施工问题具有代表性。在隧道内设置了11个监测断面,监测内容包括隧道变形、围岩、喷射混凝土、钢架、锚杆及临时支护的力学响应。以最典型断面的监测数据为例,详细分析了浅埋超大断面隧道支护结构的力学响应。基于以往的研究成果,本文对该类隧道常见的施工问题进行了探讨和总结,并提出了相应建议。现有的围岩压力计算公式对台阶法施工的超大断面隧道适用性较差,导致支护参数偏于保守。因此,基于下北山1号和2号隧道10个监测断面的围岩压力监测值,总结了反映台阶法影响的经验参数。基于王公式并结合台阶法经验参数,构建了考虑台阶法的浅埋超大断面隧道围岩压力经验公式。计算结果与现场监测数据吻合良好。本研究可为类似工程提供良好参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1245/11169646/895981b3e132/41598_2024_64522_Fig1_HTML.jpg

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