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Academic Journal of Engineering and Technology Science, 2023, 6(11); doi: 10.25236/AJETS.2023.061104.

Application of Microseismic Monitoring Technology in Mine Disaster Prevention and Control

Author(s)

Yanping Xue1,2

Corresponding Author:
Yanping Xue
Affiliation(s)

1China Coal Technology and Engineering Group Shenyang Research Institute, Fushun, 113122, China

2State Key Laboratory of Coal Mine Safety Technology, Fushun, 113122, China

Abstract

Mine disasters pose significant challenges to mining safety. In order to achieve safe production and effective prevention of disasters in mines, mining monitoring technologies have always been a focus of academic and engineering fields. With the continuous development of technology, microseismic monitoring technology has gradually become an important tool in mine disaster prevention and control. This paper focuses on the application of microseismic monitoring technology in mine disaster prevention and control, analyzes its advantages and development prospects, and provides a comprehensive analysis and discussion based on practical cases.

Keywords

Microseismicity; monitoring techniques; mine disaster control

Cite This Paper

Yanping Xue. Application of Microseismic Monitoring Technology in Mine Disaster Prevention and Control. Academic Journal of Engineering and Technology Science (2023) Vol. 6, Issue 11: 25-29. https://doi.org/10.25236/AJETS.2023.061104.

References

[1] Zhang C, Jin G, Liu C, et al. Prediction of rockbursts in a typical island working face of a coal mine through microseismic monitoring technology[J]. Tunnelling and Underground Space Technology, 2021, 113: 103972.

[2] Bing-rui C, Xia-ting F, Qi-qing F U, et al. Integration and high precision intelligence microseismic monitoring technology and its application in deep rock engineering[J]. Rock and Soil Mechanics, 2020, 41(7): 2422.

[3] He J, Dou L, Gong S, et al. Rock burst assessment and prediction by dynamic and static stress analysis based on micro-seismic monitoring[J]. International Journal of Rock Mechanics and Mining Sciences, 2017, 93: 46-53.

[4] Dong L, Zhu H, Yan F, et al. Risk field of rock instability using microseismic monitoring data in deep mining[J]. Sensors, 2023, 23(3): 1300.

[5] Gao W, Li Y, He Q. Determination of fractured water-conducting zone height based on microseismic monitoring: A case study in Weiqiang coalmine, Shaanxi, China[J]. Sustainability, 2022, 14(14): 8385.