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Stress evolution and coal seam deformation through the mining of a remote upper protective layer

机译:通过开采较远的上保护层,应力演化和煤层变形

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摘要

Protective layer mining is considered to be an effective method to resolve the outburst risk of coal seams, but limited theoretical and experimental results exist for remote upper protective layer mining. To study the effect of the remote upper protective layer mining, a case study of the Renlou Coal Mine is selected. The stress evolution in the protected layer is analyzed using Flac(3D) and is verified by the measurement of coal seam deformation and investigation of the unloading boundary. The results indicate that remote upper protective layer mining induces an unloading of stress within the protected layer, while a stress concentration occurs outside of the unloading area. The coal seam deformation is consistent with the stress evolution, for which the maximum compressional and expansional deformation are 0.5 parts per thousand and 7.19 parts per thousand, respectively. The gas pressure decreases significantly as a consequence of these applications, following which the gas pressures within the theoretical unloading boundary are 0.30 MPa and 0.35 MPa along-strike and along the tendency of the protected layer, respectively.
机译:保护层开采被认为是解决煤层突出危险的有效方法,但是远程上保护层开采的理论和实验结果有限。为了研究远程上保护层开采的效果,以仁楼煤矿为例。使用Flac(3D)分析保护层中的应力演化,并通过测量煤层变形和研究卸荷边界进行验证。结果表明,远程上保护层开采会在保护层内引起应力的卸载,而应力集中会在卸载区外部发生。煤层变形与应力演化相一致,其最大压缩变形和膨胀变形分别为千分之0.5和千分之7.19。由于这些应用,气压显着降低,随后沿理论行程和沿保护层的趋势,理论卸载边界内的气压分别为0.30 MPa和0.35 MPa。

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