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Impact of CO_2 mixing with trapped hydrocarbons on CO_2 storage capacity and security: A case study from the Captain aquifer (North Sea)

机译:CO_2混合与棘氏烃对CO_2储存能力和安全的影响:含水船长(北海)的案例研究

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摘要

Gas mixing in the subsurface could have crucial implications on CO2 storage capacity and security. This study illustrates the impact of gas mixing in the "Captain X '' CO2 storage site, an open saline aquifer and subset of the greater Captain aquifer, located in the Moray Firth, North Sea. The storage site hosts several abandoned hydrocarbon fields where injected CO2 could interact and mix with any remaining hydrocarbon gas left in the depleted structures. For this study, compositional simulation of CO2 injection into the Captain X storage site reservoir model was conducted to quantify the impact of mixing. Results show mixing of CO2 with the remaining trapped hydrocarbon gas makes the plume considerably less dense and more mobile. This increases the buoyancy forces acting on the plume, causing it to migrate faster towards the shallower storage boundaries and therefore, reduces the storage capacity of the site. Mixing also compromises the storage security as it mobilises the structurally trapped hydrocarbon gas from within the abandoned fields. Informed injector placement helps to manage and reduce the impact of mixing. Correct assessment of mixing is also considerably dependent on the volume and property of the trapped hydrocarbon gas. To provide a correct long term understanding of storage capacity and security, the impact of mixing, therefore, needs to be correctly considered in all large-scale CO2 storage operations.
机译:地下气混合可能对二氧化碳储存能力和安全性具有重要影响。本研究说明了气体混合在“X”二氧化碳储存部位,一个公开盐水含水层和大船长含水层的子集,位于北海的Moray Fasth。存储场地举办了几个被注射的废弃的碳氢化合物领域CO2可以与耗尽结构中留下的任何剩余的烃气体相互作用和混合。对于该研究,进行了CO2注入X储存场储层模型的CO2注射的组成模拟,以量化混合的影响。结果显示CO2与剩余的影响被困的碳氢化合物气体使羽毛相当较少,更密集,更加流动。这增加了作用在羽流上的浮力力,导致它朝着较浅的储存界限迁移,因此减少了该网站的存储能力。混合也妥协了存储安全性因为它可以从废弃的领域中动员结构被困的烃类。被告知的注射器放置有助于m厌食并减少混合的影响。对混合的正确评估也大大取决于被困烃类气体的体积和性质。为了提供对存储容量和安全性的正确长期了解,因此在所有大规模的CO2存储操作中需要正确考虑混合的影响。

著录项

  • 来源
    《Applied Energy》 |2020年第15期|115634.1-115634.13|共13页
  • 作者单位

    Heriot Watt Univ Inst GeoEnergy Engn Edinburgh EH14 4AS Midlothian Scotland;

    Heriot Watt Univ Inst GeoEnergy Engn Edinburgh EH14 4AS Midlothian Scotland;

    Univ Edinburgh Grant Inst Sch Geosci West Main Rd Edinburgh EH9 3JW Midlothian Scotland|Univ Bonn Steinmann Inst Geol Nussallee 8 D-53115 Bonn Germany;

    Univ Aberdeen Dept Geol & Petr Geol Aberdeen AB24 3FX Scotland|CSIC ICTJA Inst Earth Sci Jaume Almera Barcelona 08028 Spain;

    Pale Blue Dot Energy Bratherns Ecobusiness Pk Banchory 31 4BW Kincardine Scotland;

    Univ Liverpool Dept Earth Ocean & Ecol Sci 4 Brownlow St Liverpool L69 3GP Merseyside England;

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

    CCS; CO2 storage; Mixing; Saline aquifer; Plume migration; Compositional modelling;

    机译:CCS;CO2储存;混合;盐水含水层;羽流迁移;组成建模;

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