Calculation Method of Loose Pressure in Surrounding Rock Mass

Author:

Gao Hongjie1,Ma Weibin1,Zou Wenhao1,Zhang Jinlong1,Li Xinyu2,Han Jiaqiang1ORCID

Affiliation:

1. Railway Engineering Research Institute, China Academy of Railway Sciences Corporation Limited, Beijing 100081, China

2. Institute of Computing Technology, China Academy of Railway Sciences Corporation Limited, Beijing 100081, China

Abstract

With the implementation of the regional coordinated development strategy, traffic flow has grown explosively. The construction of a larger tunnel section becomes an effective way to solve the highway network’s insufficient transport capability problem. Currently, there is little research on the factors influencing and methods of calculating the loose pressure in the surrounding rock mass for highway tunnels with super-large cross-sections. Based on the Bifurcation Tunnel, which is one of the sign projects in the past five years, this paper discusses the influencing factors for the range of loose zone in deeply buried tunnels using a combination of a numerical analysis and an orthogonal test. The weight of influencing factors is calculated via an efficiency evaluation method. This paper establishes a limit analysis model of the loose pressure in the surrounding rock mass under a non-linear failure criterion based on the fitted boundary function and upper bound limit analysis method and deduces the correlations of the loose pressure. The distribution law of the loose pressure, obtained via the limit analysis method, is consistent with the pressure-monitoring results, verifying the correctness of the proposed calculation method. This study can provide a calculation basis for the design of a supporting structure and the selection of similar super-section tunnel projects.

Funder

China National Railway Group Science and Technology Research Program

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference37 articles.

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2. Bierbaumer, A. (1913). Diedimensionerung des Tunnelmauerwerks, Engelmann.

3. Terzaghi, K. (1943). Theoretical Soil Mechanics, John Wiley and Sons, Inc.

4. Earth Pressure on Shallow Burial Tunnel;Xie;China Civil Eng. J.,1964

5. (2005). Code for Design of Railway Tunnels (Standard No. TB10003).

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