Microseismic Dynamic Response and Multi-Source Warning during Rockburst Monitoring Based on Weight Decision Analysis

Author:

Tian Jiawei,Chen Dong,Liu Zhentang,Sun Weichen

Abstract

To prevent rockburst disasters and improve the accuracy of warnings for rockburst, based on the microseismic data of the 1366 working face of Hengda Coal Mine collected by the microseismic monitoring system, Fourier transform, wavelet packet transform, and Hilbert–Huang transform analysis methods are used for time-frequency domain joint analysis. The time-frequency differences of the main frequency, amplitude, frequency band percentage, and instantaneous energy of the high-energy microseismic event and the events before high-energy microseismic event are obtained. The analysis shows that the high-energy event has obvious low frequency characteristics, and when the high-energy event occurs, the instantaneous energy shows an obvious “inverted V” trend. At the same time, it is found that the acoustoelectric indexes show a trend of “rising” or “inverted V” when the high-energy event occurs. On this basis, the unascertained measure comprehensive evaluation model of rock burst hazard is established by analytic hierarchy process (AHP). Based on the analysis of microseismic data and the acoustoelectric index of the 1366 working face in Hengda coal mine, it is of great significance to determine the warning indicators for rockburst, improve the accuracy of uncertainty quantitative analysis for rockburst, and improve the discrimination accuracy of rockburst risk.

Funder

National Natural Science Foundation of China Youth Foud

Publisher

MDPI AG

Subject

Health, Toxicology and Mutagenesis,Public Health, Environmental and Occupational Health

Reference37 articles.

1. Study on the Mechanical Properties and Mechanical Response of Coal Mining at 1000m or Deeper;Xie;Rock Mech. Rock Eng.,2019

2. Strategic thinking of simultaneous exploitation of coal and gas in deep mining;Yuan;J. China Coal Soc.,2016

3. Experimental and numerical investigations on dynamic mechanical responses and failure process of gas-bearing coal under impact load;Kong;Soil Dyn. Earthq. Eng.,2021

4. State of the art review on mechanism and prevention of coal bumps in China;Jiang;J. China Coal Soc.,2014

5. Al Heib, M., Lafont, G., Didier, C., Gunzburger, Y., Piguet, J.P., Pytel, W., and Mitri, H. (2013). Critical energy and mine rockburst potential. Rock Mech. Resour. Energy Environ., 551–556.

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