arrow
返回

Deep Rock Blasting Using Decoupled Charge with Different Coupling Mediums

delete2023-08-01
delete17
PRE
AI
刘
刘科伟 (Kewei Liu)
T
Tao Qiu
X
Xudong Li *
X
Xihong Zhang
R
Ruitao Song
X
Xiang Li
DOI:10.1061/IJGNAI.GMENG-8179delete
delete原文链接
delete原文求助
delete分享
delete收藏
摘要

摘要

En 中文
Blasts using decoupled charge with various coupling mediums are extensively operated in underground excavation, and blasting challenges are always encountered in deep rock mass due to the influence of high in-situ stress. In the present study, the dynamic responses of deep rock mass in blasting with decoupled charge and different coupling mediums (air, dry sand, wet sand, and water) are theoretically and numerically investigated. First, the transmission, propagation, and superposition of stress induced by blasting coupled with different coupling materials, and the effect of static stress distribution around boreholes on the crack initiation and propagation in blasting under conditions of varying hydrostatic pressure and anisotropic in-situ stress are theoretically analyzed with a two-hole planar analytical model. Then, a numerical model is constructed and verified against the rock fracture network obtained from a blasting test. Based on the verified numerical model, two-hole planar computational models with the same configuration as the analytical model are developed and used to perform a series of simulations. The joint effect of the coupling medium and the in-situ stress on the initiation, propagation, and interconnection of blast-induced cracks are numerically analyzed and interpreted by combining with theoretical results. The analytical and numerical investigations indicate that the evolution of blast-induced cracks in deep rock mass is mainly controlled by the stress transmitting from explosive to rock, superposition of explosion stress waves, as well as the magnitude and orientation of in-situ stress. Finally, the implications of current findings for practical blasting in deep rock mass are discussed. This study develops the understanding of rock cracking induced by blasting with different coupling mediums under high in-situ stress and provides some guidance to solve blasting difficulties in deep rock mass.
Keyword:
Rock blasting
Coupling medium
In-situ stress
Theoretical analysis
Numerical simulation
Crack evolution

期刊

International Journal of Geomechanics 封面图
International Journal of Geomechanics
IF:
3.3
论文数:
3.6K
被引数:
1.1W

机构

C
Central South University
学者数:
10.0W
论文数: 7.2W
被引数: 10.9W
C
Curtin University
学者数:
1.5W
论文数: 1.8W
被引数: 2.8W
引用论文

引用论文

Fractal damage and crack propagation in decoupled charge blasting
err2021-02-01
err57
PREAI
errDing, Chenxi; Yang, Renshu; Lei, Zhen; Wang, Meng; Zhao, Yong; Lin, Hai
err分享
err收藏
Numerical study on blast-induced fragmentation in deep rock mass
err2022-12-01
err53
PREAI
errLi, Xudong; Liu, Kewei; Yang, Jiacai; Song, Ruitao
err分享
err收藏
Simulation of Soil Behavior under Blast Loading
err2011-08-01
err65
PREAI
errAn, J.; Tuan, C. Y.; Cheeseman, B. A.; Gazonas, G. A.
err分享
err收藏
Depth profiles of Ag nanoparticles in silicate glass
err2007-11-02
err0
PREAI
errXiuchun Yang; Weijie Li; Zhihui Li; Yanan Wei; Wenhai Huang
err分享
err收藏
学者 查看更多内容