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Mechanism and Prevention of Rockburst in Steeply Inclined and Extremely Thick Coal Seams for Fully Mechanized Top-Coal Caving Mining and Under Gob Filling Conditions
- Source :
- Energies, Vol 13, Iss 6, p 1362 (2020), Energies, Volume 13, Issue 6
- Publication Year :
- 2020
- Publisher :
- MDPI AG, 2020.
-
Abstract
- The steeply inclined and extremely thick coal seams (SIETCS) under the condition of gob filling frequently suffer from the occurrence of rockbursts. Figuring out the mechanisms of rockbursts under this condition for taking targeted measures to mitigate rockburst hazards in SIETCS is of great significance. Using the typical SIETCS with an average dip angle of 87&deg<br />at Wudong Coal Mine (WCM) as a case study, a mechanical model and elastic deformation energy (EDE) function of a &ldquo<br />steeply inclined suspended roof structure&rdquo<br />was developed, and the influence factors were analyzed by theoretical analysis. Simultaneously, the rockburst risk assessment was carried out based on the theory of a rockburst start-up. The pressure relief measures are optimized by comparing the pressure relief effects of three kinds of destress blasting schemes. The results indicate that the damage characteristics of rockburst are mainly floor heave, the sidewall&rsquo<br />s inward deformation and roof subsidence. The damage degree of headentry on the roof side is more severe than that of tailentry, and the resultant impacts showed the directionality from the roof side to the coal side. The steeply inclined and suspended roof breakage is one of the main causes for the occurrence of rockbursts. The EDE of the roof increases with an increasing dip angle of the coal seam from 0&deg<br />to 72.6&deg<br />and then decreases as the dip angle increases. Furthermore, that increase is accompanied by the decrease of the lateral pressure coefficient and the supporting force coefficient. The EDE stored in the roof is sufficient to cause roof breakage and induce rockburst after the complete roof exceeds a certain length. The mechanism of rockburst in SIETCS for fully mechanized top-coal caving mining under gob filling conditions was proposed, i.e., &ldquo<br />high compressive stress concentration plus breakage of the suspended roof-induced stress&rdquo<br />rockburst, and this is further verified by ground destruction, microseismic (MS) monitoring and numerical modeling. The results also indicate that alternate deep and shallow hole-blasting modes are more suitable for pressure relief in SIETCS.
- Subjects :
- Control and Optimization
0211 other engineering and technologies
Energy Engineering and Power Technology
Magnetic dip
02 engineering and technology
Pressure coefficient
lcsh:Technology
destress blasting
Stress (mechanics)
Breakage
Mining engineering
Coal
Electrical and Electronic Engineering
Engineering (miscellaneous)
Roof
021101 geological & geomatics engineering
021102 mining & metallurgy
Renewable Energy, Sustainability and the Environment
business.industry
lcsh:T
Coal mining
Subsidence
steeply inclined and extremely thick coal seam
mechanical model
elastic deformation energy
roof breakage
rockburst
business
Geology
Energy (miscellaneous)
Subjects
Details
- Language :
- English
- ISSN :
- 19961073
- Volume :
- 13
- Issue :
- 6
- Database :
- OpenAIRE
- Journal :
- Energies
- Accession number :
- edsair.doi.dedup.....b2e8fdf5a89cf1704af2c0dd8a983d76