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Analysis and Prediction of Gas Recovery from Abandoned Underground Coal Mines in China

机译:中国废弃地下煤矿气体回收分析与预测

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摘要

Mine closures are likely to become especially widespread in eastern China. However, because of relatively high residual coal-bed methane content, the abandoned coal mine methane (ACMM) reserves of China are huge, and from a greenhouse gas-control perspective it is preferable that they be developed and utilized rather than allowed to vent to the atmosphere. The exploitation and development of ACMM in China is still in its infancy, with theory and practice undergoing rapid development. Four factors are particularly influential in the design of ACMM recovery strategies. The first factor is what may be termed the "enrichment space," which reflects the final state of the strata after completion of longwall extraction and subsequent strata settlement and is here defined as the region between the outer limit of stress relief and the limit of the extracted panels. Quantitative analysis of the components of gas mixtures recovered from the enrichment space can be tracked using stable carbon isotope techniques. The second factor is the permeability field surrounding the abandoned mine voids. The thick mudstones that commonly overlie the coal seams serve to confine the water and gas within the enrichment space and old mine voids. The geometry of these confining layers can be confirmed by seismic reflection or other geophysical methods, which can reveal the extent of the zone affected by fracture development. On this basis, models of methane movement in abandoned mines can be constrained, allowing valuable predictions of availability of ACMM resources under different mining and post-closure drainage conditions.
机译:矿井关闭可能在中国东部尤为普及。但是,由于剩余煤层甲烷含量相对较高,中国的废弃煤矿甲烷(ACMM)储备来自温室气体控制视角,优选开发和利用,而不是允许发泄气氛。中国ACMM的开发和发展仍处于初期,具有迅速发展的理论与实践。在ACMM恢复策略的设计中,四个因素特别有影响力。第一因素是可能被称为“富集空间”,其在长壁提取和随后的地层沉降完成后反映了地层的最终状态,并且这里被定义为应力浮雕的外部极限和下限之间的区域。提取的面板。可以使用稳定的碳同位素技术跟踪从富集空间中回收的气体混合物组分的定量分析。第二个因素是围绕废弃矿山空隙的渗透场。通常覆盖煤层的厚泥岩可用于将水和天然气限制在富集空间和旧矿山空隙中。这些限制层的几何形状可以通过地震反射或其他地球物理方法来确认,这可以揭示受骨折发育影响的区域的程度。在此基础上,放弃矿山甲烷运动的模型可以受到限制,允许在不同采矿和闭合后排水条件下的ACMM资源可用性的有价值预测。

著录项

  • 来源
  • 作者

    WEI LI; ER-LEI SU; RONG ZHANG;

  • 作者单位

    Key Laboratory of Coal Methane and Fire Control Ministry of Education China University of Mining and Technology Xuzhou 221116 China;

    Key Laboratory of Coal Methane and Fire Control Ministry of Education China University of Mining and Technology Xuzhou 221116 China;

    Key Laboratory of Coal Methane and Fire Control Ministry of Education China University of Mining and Technology Xuzhou 221116 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境地学;
  • 关键词

    Abandoned Coal Mine; Gas Recovery; Mining; Isotope; Emission;

    机译:被遗弃的煤矿;天然气恢复;采矿;同位素;排放;

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