Triaxial creep damage characteristics of sandstone under high crustal stress and its constitutive model for engineering application

Author:

Chen Dongxu1,Wang Laigui1,Versaillot Pierre Darry2,Sun Chuang3

Affiliation:

1. School of Mechanics and Engineering Liaoning Technical University Fuxin China

2. Department of Civil Engineering The University of Tokyo Tokyo Japan

3. School of Civil Engineering Liaoning Technical University Fuxin China

Abstract

AbstractThe creep characteristics of rock under high crustal stress are of important influence on the long‐term stability of deep rock engineering. To study the creep characteristics and engineering application of sandstone under high crustal stress, this study constructed nonlinear creep damage (NCD) constitutive mode based on the triaxial graded loading‒unloading creep test of sandstone in the Yuezhishan Tunnel. A numerical NCD constitutive model and a breakable lining (BL) model were developed based on FLAC3D and then applied to the stability analysis of the Yuezhishan Tunnel. Based on the creep test results of sandstone, a power function of creep rate and stress level was constructed, by which the long‐term strength was solved. The results show that the long‐term strength of the red sandstone based on the related function of the steady‐state creep rate and stress level is close to the measured stress value in engineering. The NCD model considering damage factors reflects the instantaneous and viscoelastic plasticity deformation characteristics of the red sandstone. The numerical NCD constitutive model and the BL model can reflect surrounding rock deformation characteristics and lining failure characteristics in practical engineering. The research results provide theoretical references for long‐term stability analysis of rock engineering and the deformation control of surrounding rock under high crustal stress.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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