Experimental investigation for dynamic instability of coal-rock masses in horizontal section mining of steeply inclined coal seams

被引:0
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作者
Zheng-yi Wang
Lin-ming Dou
Jiang He
An-ye Cao
Xiong-wei Li
Peng-bo Li
Chang-sheng Wu
机构
[1] China University of Mining & Technology,Key Laboratory of Deep Coal Resource Mining, Ministry of Education of China, School of Mines
[2] Changzhou Institute of Technology,School of Civil Engineering & Architecture
来源
Arabian Journal of Geosciences | 2020年 / 13卷
关键词
Rockburst; Steeply inclined coal seams; Dynamic loading; Physical simulation; AE;
D O I
暂无
中图分类号
学科分类号
摘要
The rockburst in steeply inclined coal seams (SICSs) is a typical dynamic instability event in coal-rock masses under dynamic and static loads. Existing physical experimental studies mainly investigate the quasi-static failure characteristics of coal-rock masses and lack physical experimental data gathered under applied dynamic loads, thus failing to reveal the full nature of the mechanism driving such a rockburst. On this basis, the spatio-temporal evolutionary characteristics of dynamic instability in SICSs were explored by conducting similar simulation experiments under dynamic and static loads. The results show that, under the compound influence of increasing dynamic loading intensity and decreasing distance from the dynamic loading source to the stope, the extent and severity of dynamic damage were aggravated correspondingly, and the characteristic parameters of displacements and accelerations varied non-linearly. The peak values and scope of influences of mining-induced stresses, degree of dynamic damage, and dynamic deformation of coal masses at the roof side were all greater than those at the floor side for the same sub-level; meanwhile, the rockburst also occurred inside the coal masses at the roof side, which reflected the asymmetry of the stress state and dynamic instability in SICSs. The vibration displacements at the roof side instantaneously reached a peak and the accelerations rapidly declined only after a single fluctuation during the rockburst, which revealed the explosive nature of such rockbursts. By contrast, the significant growth in the characteristic parameters of displacements and accelerations could reflect the remarkable destructiveness of rockbursts. This study may eventually lead to an experimental methodology for researching rockburst mechanisms in horizontal section mining of SICSs.
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