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曹安业, 白贤栖, 蔡武, 温颖远, 李许伟, 马祥, 黄锐. 覆岩厚度变化应力异常机制及冲击矿压诱发机理[J]. 岩土工程学报, 2023, 45(3): 512-520. DOI: 10.11779/CJGE20211194
引用本文: 曹安业, 白贤栖, 蔡武, 温颖远, 李许伟, 马祥, 黄锐. 覆岩厚度变化应力异常机制及冲击矿压诱发机理[J]. 岩土工程学报, 2023, 45(3): 512-520. DOI: 10.11779/CJGE20211194
CAO Anye, BAI Xianxi, CAI Wu, WEN Yingyuan, LI Xuwei, MA Xiang, HUANG Rui. Mechanism for stress abnormality and rock burst in variation zone of roof-stratum thickness[J]. Chinese Journal of Geotechnical Engineering, 2023, 45(3): 512-520. DOI: 10.11779/CJGE20211194
Citation: CAO Anye, BAI Xianxi, CAI Wu, WEN Yingyuan, LI Xuwei, MA Xiang, HUANG Rui. Mechanism for stress abnormality and rock burst in variation zone of roof-stratum thickness[J]. Chinese Journal of Geotechnical Engineering, 2023, 45(3): 512-520. DOI: 10.11779/CJGE20211194

覆岩厚度变化应力异常机制及冲击矿压诱发机理

Mechanism for stress abnormality and rock burst in variation zone of roof-stratum thickness

  • 摘要: 顶板覆岩结构是影响煤矿冲击矿压发生的主要因素之一,在坚硬覆岩厚度变化区也容易诱发冲击矿压,这一现象在内蒙深部矿区逐渐凸显。基于弹性力学理论分析了覆岩厚度变化区煤层应力异常的力学机制,采用FLAC3D数值模拟方法研究了覆岩厚度变化对煤层应力分布特征和能量演化的影响规律,揭示了坚硬覆岩厚度变化区煤层开采诱发冲击矿压的机理。研究结果表明:坚硬覆岩较厚区的构造应力比较薄区大,覆岩厚度变化越大或覆岩性质差异越大,构造应力变化越大;工作面在覆岩厚度变化区开采时,受超前支承压力与突变的构造应力叠加影响,覆岩厚度变化区至较厚区应力集中程度较大,该区域积聚的弹性能主要向工作面前方巷道释放,冲击矿压危险更大。两例覆岩厚度变化区工程案例分析表明,在坚硬覆岩厚度变化区及变化区向较厚区过渡时微震事件分布较多,能量释放剧烈,巷道破坏明显,与理论分析较为吻合。

     

    Abstract: The roof stratum structure is one of the main factors affecting coal burst, and the coal burst is also easily induced in the variation zone of roof-stratum thickness. This phenomenon is gradually severe in deep mining areas in Inner Mongolia. The stress distribution in the variation zone of roof-stratum thickness is analyzed based on the theory of elastic mechanics. The FLAC3D numerical modeling is then performed to investigate the influences of the variation of stratum thickness on the stress distribution characteristics and energy evolution in the coal seam. The coal burst mechanism due to the variation of stratum thickness is finally released. The results show that the tectonic stress in the thick roof zone is larger than that in the thin roof zone, and the stress gradient increases with the increasing variation in the stratum thickness or the roof properties. In the variation zone of roof-stratum thickness, the superposition of the advanced abutment pressure and the increasing tectonic stress results in a high-stress concentration area. A higher coal burst risk might thus occur in the roadway near the longwall in the roof variation zone to the thicker roof zone, where more intensive elastic energy is released in the coal/rock mass. The comparative analysis of two field cases shows that more seismic activities occur in the variation zone of stratum thickness and from the variation zone to the thicker stratum zone, and the roadway damage is obvious, which is consistent with the theoretical analysis.

     

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