TY - JOUR
T1 - Numerical simulation of two-hole blasting using numerical manifold method
AU - Huang, Tao
AU - Chen, Peng Wan
AU - Zhang, Guo Xin
AU - Yang, Jun
PY - 2006/9
Y1 - 2006/9
N2 - Based on the fundamental theories of numerical manifold method (NMM), a criterion of crack initiation and crack growth is introduced into NMM. NMM is used to numerically study the process of two-hole blasting, in which two different initiation conditions are considered. One is simultaneous initiation, the other is 0.1 ms delay initiation. The whole blasting process is simulated, including crack initiation, crack growth, the formation of fragments and the formation of a blasting crater. The failure mechanisms of rock under blasting loading and the influences of initiation conditions on that process are analyzed, NMM has proven to be an effective and accurate method in the study of rock failure from a continuous mass to a discontinuous mass. The results provide further insights and a new method in the research of the related issues.
AB - Based on the fundamental theories of numerical manifold method (NMM), a criterion of crack initiation and crack growth is introduced into NMM. NMM is used to numerically study the process of two-hole blasting, in which two different initiation conditions are considered. One is simultaneous initiation, the other is 0.1 ms delay initiation. The whole blasting process is simulated, including crack initiation, crack growth, the formation of fragments and the formation of a blasting crater. The failure mechanisms of rock under blasting loading and the influences of initiation conditions on that process are analyzed, NMM has proven to be an effective and accurate method in the study of rock failure from a continuous mass to a discontinuous mass. The results provide further insights and a new method in the research of the related issues.
KW - Mechanics of explosion
KW - Numerical manifold method
KW - Numerical simulation
KW - Process of rock failure
KW - Shock loading
KW - Two-hole blasting
UR - https://www.scopus.com/pages/publications/33845805784
M3 - Article
AN - SCOPUS:33845805784
SN - 1001-1455
VL - 26
SP - 434
EP - 440
JO - Baozha Yu Chongji/Expolosion and Shock Waves
JF - Baozha Yu Chongji/Expolosion and Shock Waves
IS - 5
ER -