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主办单位:煤炭科学研究总院有限公司、中国煤炭学会学术期刊工作委员会
低阶煤层气富集主控地质因素与成藏模式分析
  • Title

    Analysis of main geological controls on coalbed methane enrichment and accumulation patterns in low rank coals

  • 作者

    刘大锰王颖晋蔡益栋

  • Author

    LIU Dameng, WANG Yingjin, CAI Yidong

  • 单位

    中国地质大学(北京)能源学院

  • Organization
    School of Energy, China University of Geosciences(Beijing), Beijing , China
  • 摘要

    针对我国低阶煤层气分布和富集受多种地质因素控制的现状,对沉积环境、构造作用及水文地质条件等关键地质因素进行了分析,结果表明:低煤化作用阶段,镜质组(腐植组)对于煤岩吸附能力具有一定的贡献作用;煤质中的水分起消极作用。沉积环境影响煤系地层厚度和总资源量,煤层顶、底板厚度越大,岩性越致密,越有利于煤层气保存;含气量与煤厚呈正相关。构造运动可能造成封盖层破坏,导致煤层气逸散,也可能形成良好的侧向封堵。水动力系统对低阶煤层气的生成和保存均有控制作用,其与低阶煤盆地中煤层气富集的利害关系必须结合水文地质与构造耦合关系加以判识。对于低阶煤层气藏,游离气含量不可忽视,在有利成藏模式选择上应重视构造动力条件的分析及构造圈闭点的评价。

  • Abstract
    According to the status of the low rank coalbed methane distribution and enrichment in China affected by the multi geological factor control, an analysis was conducted on the sedimentary environment, tectonic role and the hydrogeologic condition as well as other key geologic factors. The results showed that in a low coalification stage, the vitrinite (huminite) could make a certain contribution role to the adsorption capacity of the coal and rock. The moisture content in the coal property would have a negative effect. A sedimentary environment would affect the thickness and total resource volume of the coal measure strata. A higher thickness of the seam roof and floor, the higher compact of the lithology would be more favorable to the keeping of the coalbed methane. The gas content of the seam would have a positive correlation to the seam thickness. A tectonic movement might cause a failure to the covered layer, would cause the releasing of the coalbed methane and might form a good lateral sealing. A hydrodynamic system would have a control role both to the formation and keeping of the low rank coalbed methane. The interested relation of the coalbed methane enrichment in the low rank coal basin should be distinguished with the coupling relationship between the hydrogeology and the tectonics. As for the low rank coalbed methane reservoir, the free gas content should not be ignored. On the favorable selection of the reservoir formation mode, a high attention should be made to the analysis on the tectonic dynamic condition and the evaluation of the tectonic traps.
  • 关键词

    低阶煤沉积模式构造演化水文地质成藏模式

  • KeyWords

    low rank coal; sedimentary mode; tectonic evolution; hydrogeology; reservoir formation mode

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