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Thermo-hydro-mechanical Modeling of CO2 Sequestration System Around Fault Environment

机译:故障环境下CO 2固存系统的热-水-力学模型

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摘要

Geological sequestration of CO2 (carbon dioxide) shows great potential to reduce Greenhouse gas emissions. However, CO2 injection into geological formations may give rise to a variety of coupled chemical and physical processes. The thermo-hydro-mechanical (THM) impact of CO2 injection can induce fault instability, even possibly lead to seismic activities in and around the disposal reservoir. A sequential coupling approach under some assumptions was proposed in the numerical study to investigate the THM behavior of the CO2 sequestration system concerning the temperature, initial geological stress, injection pressure and CO2 buoyancy. The fault was treated as a flexible contact model. The effects of CO2 injection on the mechanical behavior of the faults were investigated. The Drucker-Prager model and the cap model were used to model the constitutive relationship of formations. The numerical results show that injection pressure sensitively affects the relative slip change of the fault. At the initial stage of the sequestration process, the injection pressure plays a key role in affecting the pore pressure of the formations. However, as time continues, the influence of CO2-induced buoyancy becomes obvious on the pore pressure of the formations. In general, The THM effects of CO2 geosequestration do not affect the mechanical stability of formations and faults.
机译:二氧化碳的地质隔离显示出减少温室气体排放的巨大潜力。然而,向地层中注入二氧化碳可能会引起各种化学和物理过程的耦合。注入二氧化碳的热-水-机械(THM)影响会引起断层的不稳定性,甚至可能导致处置储层内部和周围的地震活动。在数值研究中提出了一种在一定假设下的顺序耦合方法,以研究CO 2固存系统的THM行为,涉及温度,初始地质应力,注入压力和CO 2浮力。该故障被视为柔性接触模型。研究了注入二氧化碳对断层力学行为的影响。 Drucker-Prager模型和盖模型被用来模拟地层的本构关系。数值结果表明,注入压力敏感地影响了断层的相对滑动变化。在封存过程的初始阶段,注入压力在影响地层孔隙压力方面起着关键作用。然而,随着时间的推移,CO2引起的浮力对地层孔隙压力的影响变得明显。通常,CO2 固存的THM效应不会影响地层和断层的机械稳定性。

著录项

  • 来源
    《Pure and Applied Geophysics》 |2006年第12期|2585-2593|共9页
  • 作者单位

    Department of Urban and Civil Engineering Ibaraki UniversityInstitute of Geology and Geoinformation National Institute of Advanced Industrial Science and Technology (AIST);

    Department of Urban and Civil Engineering Ibaraki University;

    Institute of Mechanics Chinese Academy of Sciences;

    Institute of Mechanics Chinese Academy of SciencesCenter for Analysis and Prediction China Earthquake Administration;

    Research Institute of Innovative Technology for the Earth (RITE)Institute of Rock and Soil Mechanics Chinese Academy of Sciences;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sequestration; Greenhouse gas; fault; thermo-hydro-mechanical modeling; Drucker-Prager model; cap model;

    机译:固存;温室气体;断层;热-水力力学模型;Drucker-Prager模型;盖模型;

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