首页> 外文学位 >Geomechanical Analysis of Caprock Integrity.
【24h】

Geomechanical Analysis of Caprock Integrity.

机译:盖层完整性的地质力学分析。

获取原文
获取原文并翻译 | 示例

摘要

To safely store carbon dioxide in enhanced oil recovery/ CO2 sequestration projects it is important to ensure the integrity of the caprock during and after production and injection. A change in fluid pressure and temperature within a porous reservoir will generally induce stress changes within the reservoir and the rocks that surround it. Amongst the potential hazards resulting from these induced stress changes is the reactivation of existing faults or fractures and inducing new fractures, which may breach the hydraulic integrity of the caprock that bounds the reservoir.;The developed methodologies have been applied to six different case studies: fault reactivation analysis in the entire field for a synthetic case study; induced fracturing analysis in the entire field in a synthetic case study; fault reactivation and induced stress change analysis within the Ekofisk oil reservoir in North Sea; fault reactivation analysis in the Lacq gas reservoir in France; the Weyburn-Midale EOR/CO2 Storage project in southeast Saskatchewan; and acid gas injection in Zama oil field, Alberta. The results of these case studies show good consistency with field observation, and physical and numerical models.;The generality, simplicity, and straightforwardness of the developed methodologies, along with their flexibility to model different plausible scenarios and their ease of implementation for systematic sensitivity analyses makes them suitable for decision-making and uncertainty management, specifically in early stages of reservoir development or site assessment for geological sequestration of carbon dioxide.;The theories of inclusions and inhomogeneities have been used in this research to derive semi-analytical and closed-form solutions for induced stress change during pore pressure change within a reservoir and in the surrounding rock, under plane strain and axisymmetric conditions. Methods have been developed to assess fault reactivation and induced fracturing during injection or production within a reservoir. The failure stress change concept for a Coulomb failure criterion has been used to study the likelihood of fault reactivation and induced fracturing within the reservoir. Formulations have been adopted to calculate the critical pressure change for fault reactivation and induced fracturing within the reservoir and in the surrounding rock during injection and production. Sensitivity analysis has been performed to study the effects of different parameters such as initial in-situ stress, reservoir geometry, reservoir depth, reservoir “tilt” or dip , material property contrast between the reservoir and surrounding rock, fault geometry, fault strength, and intact rock strength. General patterns of induced stress change, in-situ stress evolution, fault reactivation, and induced fracturing have been identified.
机译:为了安全地将二氧化碳储存在提高采收率/固存二氧化碳的项目中,重要的是在生产和注入后以及注入后确保盖层的完整性。多孔储层中流体压力和温度的变化通常会引起储层及其周围岩石的应力变化。由这些引起的应力变化导致的潜在危害包括重新激活现有的断层或裂缝并引发新的裂缝,这可能会破坏限制储层的盖层的水力完整性。已开发的方法已应用于六个不同的案例研究:整个领域的故障恢复分析,以进行综合案例研究;在综合案例研究中对整个油田进行了压裂分析;北海埃科菲斯克油藏内的断层复活和诱发应力变化分析;法国拉克气藏的断层复活分析;萨斯喀彻温省东南部的Weyburn-Midale EOR / CO2封存项目;和艾伯塔省扎马油田的酸性气体注入。这些案例研究的结果表明与现场观察以及物理和数值模型具有良好的一致性。;所开发方法的一般性,简单性和直接性,以及它们可以为不同的可能情况建模的灵活性,以及​​它们易于进行系统的敏感性分析使它们适用于决策和不确定性管理,特别是在油气藏开发的早期阶段或二氧化碳地质封存的现场评估中。在平面应变和轴对称条件下,在储层和围岩中孔隙压力变化期间引起的应力变化的解。已经开发出了用于在储层内的注入或生产期间评估断层再活化和引起的压裂的方法。库仑破坏准则的破坏应力变化概念已用于研究储层内断层再活化和诱发压裂的可能性。已经采用公式来计算注入和生产过程中储层内和围岩中断层再活化和诱发压裂的临界压力变化。进行了敏感性分析以研究不同参数的影响,例如初始地应力,储层几何形状,储层深度,储层“倾斜”或倾角,储层与围岩之间的材料特性对比,断层几何形状,断层强度和完整的岩石强度。已经确定了诱导应力变化,原地应力演化,断层再活化和诱导压裂的一般模式。

著录项

  • 作者

    Soltanzadeh, Hamidreza.;

  • 作者单位

    The University of Saskatchewan (Canada).;

  • 授予单位 The University of Saskatchewan (Canada).;
  • 学科 Engineering Geological.;Engineering Petroleum.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 277 p.
  • 总页数 277
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号