DocumentCode :
633636
Title :
Rockburst Behaviors of Beishan Granite Subjected to Instantaneous Unloading
Author :
Zhao Xing-guang ; Ma Li-ke ; Su Rui
Author_Institution :
CNNC Key Lab. on Geol. Disposal of High-level Radioactive Waste, Beijing Res. Inst. of Uranium Geol., Beijing, China
fYear :
2013
fDate :
29-30 June 2013
Firstpage :
1175
Lastpage :
1178
Abstract :
Deep geological disposal is an internationally accepted way to deal with high-level radioactive waste. A better understanding of mechanical characteristics of host rock is very important for the stability of underground excavation and its long-term safety during operation. In the present study, tests have been performed using a true triaxial rock test system in combination with acoustic emission monitoring technique to investigate the rockburst process of the Beishan granite under the instantaneous unloading condition. When the rock specimen is loaded in three directions, the minimum principal stress in one direction is unloaded suddenly and the intermediate principal stress is kept constant and subsequently the maximum principal stress is increased. The rockburst phenomenon is successfully simulated in the laboratory. The experimental results show that occurrence of rockburst is attributed to the gradual energy accumulation and sudden energy release in the rock. This study provides an experimental basis for further investigating the influence of rock mechanics properties on underground construction and safe assessment in the Beishan area.
Keywords :
acoustic emission testing; condition monitoring; geotechnical engineering; geotechnical structures; mechanical stability; radioactive waste disposal; rocks; stress analysis; structural engineering; Beishan granite; acoustic emission monitoring technique; deep geological disposal; instantaneous unloading; principal stress; radioactive waste disposal; rock mechanics; rockburst behaviors; safe assessment; triaxial rock test system; underground construction; underground excavation stability; Acoustic emission; Loading; Rocks; Strain; Stress; Surface treatment; Beishan granite; energy release; instantaneous unloading; rockburst;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Digital Manufacturing and Automation (ICDMA), 2013 Fourth International Conference on
Conference_Location :
Qingdao
Type :
conf
DOI :
10.1109/ICDMA.2013.278
Filename :
6598202
Link To Document :
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