Research on the Propagation Law of Stress Wave in Rock Mass Supported by Bolt under Dynamic Load
Author(s) -
Feng Chen,
Xuebin Wang,
Junguang Wang
Publication year - 2022
Publication title -
geofluids
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.44
H-Index - 56
eISSN - 1468-8123
pISSN - 1468-8115
DOI - 10.1155/2022/6022757
Subject(s) - rock mass classification , geology , geotechnical engineering , rock bolt , stress (linguistics) , displacement (psychology) , rock burst , acoustic emission , stress wave , computer simulation , structural engineering , engineering , materials science , composite material , coal , psychology , philosophy , linguistics , coal mining , simulation , psychotherapist , waste management
At present, the development of bolt support technology is in the ascendant period, which is of great significance to promote the development of geotechnical engineering. The numerical simulation software RFPA (Rock Failure Process Analysis) has been used to analyze the reinforcement effect of bolt on deep surrounding rock under dynamic load and conduct a comprehensive research on the force state of bolt. The characteristics of stress and displacement change in rock mass and bolt caused by stress wave are compared when the surrounding rock of underground chamber is supported with bolt or not. Numerical experimental results show that, under the action of dynamic load, the high stress area in surrounding rock can be transferred to the interior of rock mass by adding bolt to the surrounding rock of a high ground stress underground chamber, and the displacement value of each segment of bolt is basically the same. Moreover, the acoustic emission (AE) energy and AE count released by surrounding rock have been able to be reduced, and the force pattern of surrounding rock has been changed.
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