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Investigation of the CO_2 Flooding Behavior and Its Collaborative Controlling Factors

机译:研究CO_2洪水行为及其协作控制因素

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摘要

CO2 injection to enhance coalbed methane (CO2-ECBM) production is a promising technology for realizing the efficient exploitation of new energy resource, but its effect is cooperatively affected by miscellaneous influencing factors. To elucidate the mechanism and increase the efficiency of the displacement of CH4 by CO2, CO2 flooding experiments under the influence of the injection pressure, confining pressure, and temperature were conducted. The results show that an increase in the injection pressure enlarges the pore-fracture network of the coal matrix and promotes its gas adsorption ability and seepage capacity, while an increase in the confining pressure compresses the coal body and reduces the adsorption capacity and permeability. Increasing the temperature enhances kinetic energy and induces the thermal swelling effect, which disfavors the adsorption and seepage processes. The CO2 adsorption capacity is larger than the CH4 adsorption capacity due to the higher adsorption affinity of CO2, but the CO2 permeability is lower than the CH4 permeability due to the severe adsorption swelling effect. The CO2 flooding process is characterized by three parameters (equal percentage displacement time, displacement rate, and displacement efficiency) and can be divided into the CO2 driving stage, replacement and displacement stage, and equilibrium stage. The injection pressure and temperature decrease the displacement time and increase the displacement rate and displacement efficiency, while confining pressure shows the opposite trends. Multifactor interaction models of the displacement efficiency of coal seams at various buried depths were established and demonstrated to appropriately predict the displacement efficiency of CO2-ECBM in deep coal seams. The displacement efficiency is controlled by the reservoir performance, geological characteristics, and CO2 injection technology. The selection of a high-permeability coal reservoir and coal seams with an appropriate buried depth and the development of a reasonable injection plan are suggested for the implementation of CO2-ECBM extraction.
机译:CO2注射以增强煤层气(CO2-ECBM)生产是一种有希望的技术,用于实现新能源资源的有效开发,但其效果受到杂项影响因素的合作影响。为了阐明机制并提高CH4的位移效率,CO2,在注射压力,限制压力和温度的影响下进行CO2泛滥实验。结果表明,注射压力的增加扩大了煤基质的孔隙骨折网络,并促进其气体吸附能力和渗流能力,而限制压力的增加压缩并降低吸附能力和渗透率。增加温度增强动能并诱导热溶胀效果,其抗吸附和渗流过程。由于CO 2的吸附亲和力越高,CO 2吸附容量大于CH4吸附容量,但由于严重的吸附溶胀效应,CO 2渗透率低于CH4渗透性。 CO2泛洪工艺的特征在于三个参数(等位百分比位移时间,位移率和位移效率),并且可以分为CO2驱动级,更换和位移阶段,并且平衡阶段。注射压力和温度降低了位移时间并增加了位移率和位移效率,而限制压力显示相反的趋势。建立并证明了各种埋藏深度的煤层位移效率的多因器相互作用模型,以适当地预测深煤层中CO2-ECBM的位移效率。位移效率由储层性能,地质特性和二氧化碳注射技术控制。为实施CO2-ECBM提取的实施方案,建议选择具有适当埋地深度和合理注射计划的合理注射计划的高渗透煤储层和煤层的选择。

著录项

  • 来源
    《Energy & fuels》 |2020年第9期|11194-11209|共16页
  • 作者单位

    Shijiazhuang Tiedao Univ State Key Lab Mech Behav & Syst Safety Traff Engn Shijiazhuang 050043 Hebei Peoples R China|Hebei Technol & Innovat Ctr Safe & Efficient Min Shijiazhuang 050043 Hebei Peoples R China;

    Shijiazhuang Tiedao Univ State Key Lab Mech Behav & Syst Safety Traff Engn Shijiazhuang 050043 Hebei Peoples R China|Hebei Technol & Innovat Ctr Safe & Efficient Min Shijiazhuang 050043 Hebei Peoples R China;

    Operat & Monitoring Ctr Hefei Urban Safety & Secu Hefei 230000 Peoples R China;

    Shijiazhuang Tiedao Univ State Key Lab Mech Behav & Syst Safety Traff Engn Shijiazhuang 050043 Hebei Peoples R China|Hebei Technol & Innovat Ctr Safe & Efficient Min Shijiazhuang 050043 Hebei Peoples R China;

    Shijiazhuang Tiedao Univ State Key Lab Mech Behav & Syst Safety Traff Engn Shijiazhuang 050043 Hebei Peoples R China|Hebei Technol & Innovat Ctr Safe & Efficient Min Shijiazhuang 050043 Hebei Peoples R China;

    Shijiazhuang Tiedao Univ State Key Lab Mech Behav & Syst Safety Traff Engn Shijiazhuang 050043 Hebei Peoples R China|Hebei Technol & Innovat Ctr Safe & Efficient Min Shijiazhuang 050043 Hebei Peoples R China;

    Hohai Univ Sch Earth Sci & Engn Nanjing 211100 Peoples R China;

    Hohai Univ Sch Earth Sci & Engn Nanjing 211100 Peoples R China;

    Hohai Univ Sch Earth Sci & Engn Nanjing 211100 Peoples R China;

    Hebei Acad Emergency Management Shijiazhuang 050081 Hebei Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 22:24:59

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