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Seismic modelling of carbon dioxide in a sandstone aquifer, Priddis, Alberta.

机译:艾伯塔省普里迪斯市砂岩含水层中二氧化碳的地震模拟。

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摘要

The CO2 storage potential of a shallow sandstone layer of the Paskapoo Formation, southwest of Calgary, was evaluated in this thesis. In order to assess the CO2 monitoring viability, Gassmann fluid substitution was undertaken, followed by 2D and 3D seismic modeling in the study area. From the Gassmann approach, considerable changes of velocity and density were found with increasing CO2 saturation. In addition, Amplitude versus offset (AVO) analysis proved to be sensitive for detecting saturation changes, especially through the evaluation of Shuey's parameters. From the seismic modelled volumes, a difference in seismic amplitude was recognized. As well, time delays of the reflectors in the injection zone and below were measured. The reflectivity coefficient decreased approximately 30% and the time delay is about 1 ms. The changes caused by the presence of CO2 are identifiable by subtracting the monitor model data from the baseline model data. These models and simulations demonstrate the feasibility of using the Basal Paskapoo Fm. as a CO2 storage site, given its petrophysical, stratigraphic and geological characteristics. The proposed amount of CO 2 injection is 3000 tonnes (5 injections of 600 tonnes each), a mass that can be resolved using the seismic method. Following volumetric calculations and seismic parameters it was possible to postulate that 300 tonnes of CO 2 could be detected by time-lapse seismic analysis.
机译:本文评估了卡尔加里西南部Paskapoo组浅层砂岩层的CO2储存潜力。为了评估CO2监测的可行性,进行了Gassmann流体替代,然后在研究区域进行了2D和3D地震建模。通过Gassmann方法,发现随着CO2饱和度的增加,速度和密度发生了相当大的变化。此外,幅度与偏移(AVO)分析被证明对检测饱和度变化非常敏感,尤其是通过评估Shuey参数时。从地震模拟体积中,可以看出地震振幅的差异。同样,测量了在注入区及以下的反射器的时间延迟。反射系数降低约30%,时间延迟约为1 ms。通过从基线模型数据中减去监控器模型数据,可以识别出由CO2的存在引起的变化。这些模型和仿真证明了使用Basal Paskapoo Fm的可行性。鉴于其岩石物理,地层和地质特征,它是二氧化碳的储存地点。提议的CO 2注入量为3000吨(5次注入,每次注入600吨),可以使用地震方法解决。根据体积计算和地震参数,可以推测通过延时地震分析可以检测到300吨CO 2。

著录项

  • 作者

    Vera, Virginia Cecilia.;

  • 作者单位

    University of Calgary (Canada).;

  • 授予单位 University of Calgary (Canada).;
  • 学科 Geophysics.;Geochemistry.
  • 学位 M.Sc.
  • 年度 2012
  • 页码 127 p.
  • 总页数 127
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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