蔺亚兵, 秦勇, 王伟, 韩定锋. 彬长矿区胡家河煤矿瓦斯赋存特征及其地质控制[J]. 煤矿安全, 2019, 50(7): 219-223.
    引用本文: 蔺亚兵, 秦勇, 王伟, 韩定锋. 彬长矿区胡家河煤矿瓦斯赋存特征及其地质控制[J]. 煤矿安全, 2019, 50(7): 219-223.
    LIN Yabing, QIN Yong, WANG Wei, HAN Dingfeng. Occurrence and Geological Controls of Coal Mine Gas in Hujiahe Well Field of Binchang Mining Area[J]. Safety in Coal Mines, 2019, 50(7): 219-223.
    Citation: LIN Yabing, QIN Yong, WANG Wei, HAN Dingfeng. Occurrence and Geological Controls of Coal Mine Gas in Hujiahe Well Field of Binchang Mining Area[J]. Safety in Coal Mines, 2019, 50(7): 219-223.

    彬长矿区胡家河煤矿瓦斯赋存特征及其地质控制

    Occurrence and Geological Controls of Coal Mine Gas in Hujiahe Well Field of Binchang Mining Area

    • 摘要: 依据地质勘探、瓦斯参数测试及井下采掘资料,从地质构造、煤层顶底板岩性、煤层埋深、上覆基岩厚度、煤层厚度及煤层冲刷带等方面,综合分析了胡家河煤矿瓦斯赋存的地质控制因素。研究表明,胡家河煤矿干燥无灰基瓦斯含量在0.02~5.71 m3/t之间,平均2.87 m3/t,瓦斯相对富集带主要分布在煤矿北部和南部,瓦斯分带主要以氮气-甲烷带为主。但是,由于采用放顶煤开采工艺,该矿投产以来历年均被鉴定为高瓦斯矿井。该矿瓦斯分布在区域上主要受控于地质构造,在背斜和向斜翼部地带容易形成岩性封闭;煤层上覆有效基岩厚度及煤层厚度越大,越有利于瓦斯相对富集;煤层冲刷带对煤层瓦斯含量影响不明显,但是煤层冲刷带砂岩中含有大量游离态瓦斯气体,在煤炭开采过程中易造成瓦斯涌出量增大,采掘经过时应加以防范。

       

      Abstract: Based on geological exploration, gas parameters testing and underground mining data, the geological control factors of the gas occurrence in Hujiahe Coal Mine are synthetically analyzed from the aspects of geological structure, lithology of the coal seam roof, buried depth of coal seam, overlying bedrock thickness, coal seam thickness and coal scouring zone. The research shows that the dry ash-free gas content of Hujiahe Coal Mine is between 0.02 m3/t and 5.71 m3/t with an average of 2.87 m3/t. The relative enrichment zone of gas is mainly distributed in the northern and southern of the coal mine. The main gas zoning is mainly nitrogen-methane zone. However, due to the use of top-coal caving technology, the mine has been identified as a high-gas mine for many years since it was put into production. The gas distribution in the area is mainly controlled by the geological structure, and the lithologic seal is easily formed in the anticline and syncline wing zones. The greater the effective bedrock thickness and the thickness of the coal seam over the coal seam, the more favorable the relative enrichment of gas. The influence of coal seam scouring zone on coal seam gas content is not obvious, but the coal bed scrub zone contains a large amount of free gas, which can easily increase the gas emission during the coal mining process of coal mining, and should be taken precautions during mining and excavation.

       

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