Mechanical Properties and In-situ Stress Measurement by Rock Core Samples Drilling from a Large Section Underground Station

Author:

Li Diyuan1,Zhou Aohui1,Wang Lichuan2,Chen Yuda1,Ma Chunde1

Affiliation:

1. Central South University

2. China Railway 18th Bureau Group Co., Ltd

Abstract

Abstract Chongqing is a mountain city in western China, with complex geological environment, which brings many difficulties to the construction of large section underground projects. The construction experience of a large number of underground projects shows that ordinary engineering geological survey is difficult to meet the requirement of engineering design and construction. Therefore, on the basis of the initial survey, intensive drilling and coring work were carried out for the engineering area of the Guobo underground station with large cross-section to be built, and the basic mechanical, softening properties of the surrounding rock and in-situ stress field of the project area are obtained by laboratory tests. Based on the present experimental results and engineering experiences, it is proposed that the potential risks of Guobo station excavation include: ①bias pressure;②High in-situ stress;③Surrounding rock deterioration. The present study has practical significance for the design and construction of Guobo underground station, and it has certain reference value for the construction of underground projects in similar geological areas.

Publisher

Research Square Platform LLC

Reference29 articles.

1. Mechanisms of Large Deformation in Soft Rock Tunnels: A Case Study of Huangjiazhai Tunnel;Bian K;Bulletin of Engineering Geology Environment,2019

2. Displacement Analysis of Tunnel Support in Soft Rock Around a Shallow Highway Tunnel at Golovec;Bizjak KF;Engineering Geology,2004

3. Concept of High Geostress and its Qualitative and Quantitative Definitions;Chen F;Rock and Soil Mechanics,2015

4. Cui T, Du S, Zhang W, Yang S (2018) Cause Analysis of Longitudinal Cracks of Secondary Lining in

5. railway Soft Rock Tunnel. Rainway Engineering 58(12): 74–77

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