4.7 Article

Mechanism of Rock Burst Occurrence in Specially Thick Coal Seam with Rock Parting

Journal

ROCK MECHANICS AND ROCK ENGINEERING
Volume 49, Issue 5, Pages 1953-1965

Publisher

SPRINGER WIEN
DOI: 10.1007/s00603-015-0894-8

Keywords

Specially thick coal seam with rock parting (STCSRP); Rock burst; Occurrence mechanism; Discriminant conditions; Prevention methods; Evaluation

Funding

  1. National Basic Research Program of China [2010CB226803]
  2. National Natural Science Foundation of China [51274022, 51174016]

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Specially thick coal seam with complex construction, such as rock parting and alternative soft and hard coal, is called specially thick coal seam with rock parting (STCSRP), which easily leads to rock burst during mining. Based on the stress distribution of rock parting zone, this study investigated the mechanism, engineering discriminant conditions, prevention methods, and risk evaluation method of rock burst occurrence in STCSRP through setting up a mechanical model. The main conclusions of this study are as follows. (1) When the mining face moves closer to the rock parting zone, the original non-uniform stress of the rock parting zone and the advancing stress of the mining face are combined to intensify gradually the shearing action of coal near the mining face. When the shearing action reaches a certain degree, rock burst easily occurs near the mining face. (2) Rock burst occurrence in STCSRP is positively associated with mining depth, advancing stress concentration factor of the mining face, thickness of rock parting, bursting liability of coal, thickness ratio of rock parting to coal seam, and difference of elastic modulus between rock parting and coal, whereas negatively associated with shear strength. (3) Technologies of large-diameter drilling, coal seam water injection, and deep hole blasting can reduce advancing stress concentration factor, thickness of rock parting, and difference of elastic modulus between rock parting and coal to lower the risk of rock burst in STCSRP. (4) The research result was applied to evaluate and control the risk of rock burst occurrence in STCSRP.

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