Analysis of Plastic Zone and Pressure Variance Features of Surrounding Rock of High-Altitude Macker Tunnel: A Case Study in Jiangluling Macker Tunnel in Qinghai

Author:

Ma Xiaojun1,Guo Hongyan23ORCID,Hu Juyi2,Cai Shuang2ORCID,Cheng Liang2,Zhang Danfeng1

Affiliation:

1. Qinghai Communications Construction Management Co. Ltd., Xining, Qinghai, 810003, China

2. China Merchants Chongqing Communications Technology Research & Design Institute Co. Ltd., Chongqing 400067, China

3. Chongqing University, Chongqing 400044, China

Abstract

Due to the special mechanical properties of macker rock, problems may be caused easily if the pressure of the surrounding rock calculated from the standard empirical equation is used in the structural design of tunnel support, such as obviously insufficient bearing capacity of the support structure, large deformation, and collapse. Taking the Jiangluling Macker Tunnel in Gonghe-Yushu Highway as an example, the distribution pattern of plastic zone of the surrounding rock and the calculation method and reasonable values of pressure of the surrounding rock are studied in this paper, by means of theoretical analysis, numerical computation, and field measurement data. The results show that the elastic-plastic analysis method is suitable for the pressure of the surrounding rock of macker tunnel. The influence radius of the plastic zone of the surrounding rock can be 32 m, and the lateral pressure of the surrounding rock of the tunnel is equivalent to the vertical pressure. In the absence of test conditions and measured data, the pressure of the surrounding rock can be approximately 0.83 MPa for the purpose of design of tunnel support structure. This conclusion provides technical support for projects in similar conditions.

Funder

Qinghai Transportation Science and Technology Project

Publisher

Hindawi Limited

Subject

Civil and Structural Engineering

Reference23 articles.

1. Mechanism analysis of floor heave in layered carbonaceous shale tunnel;J. Teng;Journal of Railway Science and Engineering,2017

2. Determination of the design pressure and stand-up time for primary support;X. Mo;China Civil Engineering Journal,2002

3. Application of a combined supporting technology with U-shaped steel support and anchor-grouting to surrounding soft rock reinforcement in roadway

4. Unified solution for elastoplastic analysis of pressure tunnel;L. Song;Engineering Mechanics,1998

5. Instability mechanism of shallow tunnel in soft rock subjected to surcharge loads

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