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Experimental Evaluation of Wellbore Integrity Along the Cement-rock Boundary

机译:沿水泥-岩石边界的井眼完整性的实验评估

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摘要

Leakage of CO_2 and brine from geologic storage reservoirs along wellbores is a major risk factor to the success of geologic carbon sequestration. We conducted multiphase [supercritical (sc)CO_2-brine] coreflood experiments that simulate a leakage pathway along the cement/rock interface. A composite core constructed of oil-well cement and siltstone separated by a simulated damage zone (defect) containing ground cement and siltstone was flooded with brine + scCO_2 at 10 MPa and 60 ℃ parallel to the defect. During coinjection of scCO_2, the effective brine permeability decreased from ~200 to 90 mD due to transition to two-phase flow and then further declined to 35 mD. CO_2 injection resulted in a pH drop from 11 to 4 and carbonate-undersaturated conditions in the produced brine. Microscopy revealed leaching and erosion along the defect, a carbonation front extending 5 mm into the cement, parallel to the damage zone, and no change in the dimensions of the defect. Carbonation of cement does not appear to explain the permeability drop, which is attributed to the migration and reprecipitation of alteration products derived from cement within the defect. This study shows the potential for self-limiting flow along wellbore defects despite flow of aggressive scCO_2-brine mixtures.
机译:沿井眼的地质储层中CO_2和盐水的泄漏是地质固碳成功的主要风险因素。我们进行了多相[超临界(sc)CO_2-盐水]岩心驱油实验,模拟了沿水泥/岩石界面的泄漏路径。由油井水泥和粉砂岩构成的复合岩心被模拟的包含地层水泥和粉砂岩的破坏带(缺陷)隔开,并在平行于缺陷的10 MPa和60℃下注入盐水+ scCO_2。在scCO_2共注入过程中,有效盐水渗透率由于过渡到两相流而从〜200降低至90 mD,然后进一步降至35 mD。注入CO_2导致产生的盐水中pH从11下降到4,并且碳酸盐不饱和。显微镜检查显示沿着缺陷的浸出和侵蚀,碳化边缘延伸到水泥中5毫米,平行于损伤区域,并且缺陷尺寸没有变化。水泥的碳化似乎不能解释渗透率的下降,这归因于缺陷内水泥衍生的蚀变产物的迁移和再沉淀。这项研究表明,尽管有腐蚀性的scCO_2-盐水混合物的流动,沿井眼缺陷的自限流动的潜力。

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  • 来源
    《Environmental Science & Technology》 |2013年第1期|276-282|共7页
  • 作者单位

    Earth and Environmental Sciences, Los Alamos National Laboratory, Los Alamos, NM;

    Earth and Environmental Sciences, Los Alamos National Laboratory, Los Alamos, NM;

  • 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);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 14:01:59

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