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Published in: Rock Mechanics and Rock Engineering 8/2021

03-06-2021 | Original Paper

An Objective Crack Initiation Stress Identification Method for Brittle Rock Under Compression Using a Reference Line

Authors: Minghao Tang, Guibin Wang, Shiwan Chen, Chunhe Yang

Published in: Rock Mechanics and Rock Engineering | Issue 8/2021

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Abstract

The crack initiation stress (CI), a threshold stress at which brittle rock starts to become damaged during compression, has been widely studied. It can be used to estimate the spalling strength of tunnels in brittle rock masses. Many methods based on stress–strain curves and acoustic emission data have been proposed to identify the CI, and these methods have good statistical consistency. In the present study, the influence of varying the Poisson's ratio on the value of the CI is analyzed using the crack volumetric strain (CVS) method, and the physical meaning of the lateral strain response (LSR) method is explained. Based on the LSR method, a more stable lateral strain interval response (LSIR) method is proposed to determine the CI. We analyzed the CI of granite samples from two deep boreholes in the Beishan area, the site of China’s underground research laboratory (URL). The results show that the mean CI values determined by our proposed method are in good agreement with the results from the LSR method. The standard deviation and correlation analysis show that the CI values obtained by the proposed method have a smaller dispersion and a higher independence than those from the LSR method.

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Literature
go back to reference Martin CD (1993) The strength of massive Lac du Bonnet granite around underground openings. PhD Thesis. Winnipeg. Manitoba. University of Manitoba Martin CD (1993) The strength of massive Lac du Bonnet granite around underground openings. PhD Thesis. Winnipeg. Manitoba. University of Manitoba
Metadata
Title
An Objective Crack Initiation Stress Identification Method for Brittle Rock Under Compression Using a Reference Line
Authors
Minghao Tang
Guibin Wang
Shiwan Chen
Chunhe Yang
Publication date
03-06-2021
Publisher
Springer Vienna
Published in
Rock Mechanics and Rock Engineering / Issue 8/2021
Print ISSN: 0723-2632
Electronic ISSN: 1434-453X
DOI
https://doi.org/10.1007/s00603-021-02479-y

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