孙小明, 赵晶, 廉振山. 陷落柱-断层复合构造发育特征及对瓦斯赋存的影响研究[J]. 煤矿安全, 2020, 51(6): 14-18.
    引用本文: 孙小明, 赵晶, 廉振山. 陷落柱-断层复合构造发育特征及对瓦斯赋存的影响研究[J]. 煤矿安全, 2020, 51(6): 14-18.
    SUN Xiaoming, ZHAO Jing, LIAN Zhenshan. Study on Development Characteristics of Collapse Column-fault Composite Structure and Their Effects on Gas Occurrence[J]. Safety in Coal Mines, 2020, 51(6): 14-18.
    Citation: SUN Xiaoming, ZHAO Jing, LIAN Zhenshan. Study on Development Characteristics of Collapse Column-fault Composite Structure and Their Effects on Gas Occurrence[J]. Safety in Coal Mines, 2020, 51(6): 14-18.

    陷落柱-断层复合构造发育特征及对瓦斯赋存的影响研究

    Study on Development Characteristics of Collapse Column-fault Composite Structure and Their Effects on Gas Occurrence

    • 摘要: 针对陷落柱与伴生断层普遍发育从而严重影响矿井安全生产的问题,提出将陷落柱及其伴生断层视为陷落柱-断层复合构造的地质构造联合体,基于李家楼井田大量瓦斯地质资料,深入总结了陷落柱-断层复合构造的发育成因及分布规律,并结合现场瓦斯参数测试,探索复合构造对于瓦斯赋存的影响。结果表明:李家楼井田的陷落柱-断层复合构造分布受区域构造控制,已揭露的复合构造普遍发育在迎南风向斜轴部,其伴生断层规模较小且上盘煤岩体较为破碎,复合构造周边瓦斯赋存异常,距离复合构造越近,煤层瓦斯含量、钻屑瓦斯解吸指标越大,在局部范围复合构造对瓦斯的控制作用明显。

       

      Abstract: In view of the problem that collapse column and associated fault are generally developed which seriously affects mine safety production, this paper proposed that collapse columns and associated faults should be regarded as a geological structure consortium which was named collapse column-fault composite structure. Based on a large number of gas geological data in Lijialou Mine Field, the development causes and distribution laws of collapse column-fault composite structure were summarized in depth, and combining with field gas parameter test, the influence of composite structure on gas occurrence was explored. The results showed that the distribution of collapse column-fault composite structure in Lijialou Mine Field was controlled by regional structure. The exposed composite structure generally developed in the axis of the Yingnanfeng syncline, and its associated faults were small in scale with a fragmented upper wall. The gas occurrence around the composite structure was abnormal, and the closer it is to the composite structure, the higher the gas content and gas desorption index of drill cuttings are, and the more the composite structure controls the gas in the local area.

       

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