罗利卜, 樊珂奇. 浅埋薄基岩煤层顺沟开采防治水体系[J]. 煤矿安全, 2015, 46(12): 203-206.
    引用本文: 罗利卜, 樊珂奇. 浅埋薄基岩煤层顺沟开采防治水体系[J]. 煤矿安全, 2015, 46(12): 203-206.
    LUO Libo, FAN Keqi. Water Prevention and Treatment System of Shallow Buried Thin Bedrock Seam Mining Along Valleys[J]. Safety in Coal Mines, 2015, 46(12): 203-206.
    Citation: LUO Libo, FAN Keqi. Water Prevention and Treatment System of Shallow Buried Thin Bedrock Seam Mining Along Valleys[J]. Safety in Coal Mines, 2015, 46(12): 203-206.

    浅埋薄基岩煤层顺沟开采防治水体系

    Water Prevention and Treatment System of Shallow Buried Thin Bedrock Seam Mining Along Valleys

    • 摘要: 神东天隆集团有限责任公司霍洛湾煤矿22206综采工作面除煤层埋深浅、上覆基岩薄和松散含水层厚等不利条件外,还具有因开采条件限制造成的工作面布置同地表沟谷近上下平行叠加的特殊性。以开采过程中突水溃砂问题为研究对象,通过对矿井水文地质条件、涌(突)水分析的基础上,对煤矿开采过程中突水溃砂灾害发生的可能性进行分析;并结合水资源保护、生态恢复及工程可实施情况,提出“时间+空间、优化接续+防治水工程”的防治水体系,对防治水工程进行了论述。

       

      Abstract: Shendong Tianlong Group Huoluowan Coal Mine 22206 fully mechanized working face, in addition to shallow buried depth, the adverse conditions of thin overlying bedrock and thick loose water containing layer, has the particularity that working face layout is near parallel stacking up and down with surface valleys due to mining conditions. Therefore, we taking water and sand issue in mining process as a research object, based on the analysis of mine hydrogeological conditions and water inrush, we analyzed possibility of water-inrush and sand crushing disaster in the process of coal mining. Combined with water conservation, ecological restoration and implementation of the projects, "space+time, optimized connection + water control project" control water system was proposed, the prevention and control of water engineering are discussed.

       

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