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Wellbore Efficiency Model for CO2 Geological Storage Part I: Theory and Wellbore Element

机译:CO2地质储存部分的井筒效率模型I:理论与井眼元素

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Storing carbon dioxide (CO2) in deep geological formations is one part of the carbon capture and storage (CCS) process. The process of storing CO2 into deep geological formations is defined as geological CO2 sequestration or CO2 geo-sequestration. Injecting CO2 into a reservoir does not guarantee safe storage because CO2 could leak back to the surface and/or may contaminate specific strata where other energy, mineral and/or groundwater resources are present. Two mechanisms control assurance of storage integrity, which are containment within the geological structure and minimizing the potential for wellbore leakage (Espie, 2005). This study is concerned with describing the wellbore leakage mechanism utilizing wellbore element, which will be extended to the whole wellbore system. To get a better chance of success in practice, successful CCS depends on the smallscale leakage problem associated with localized flow along wellbores. Our knowledge of wellbore performance for storage purposes is still weak. The paper is the first of a series to model wellbore element analytically by introducing wellbore sealing efficiency index. Wellbore sealing efficiency can be used as a ranking criteria between different wellbore elements in the same well and/or different wells in the same locality. Moreover, safety performance of wellbore element can be assessed.
机译:将二氧化碳(CO2)储存在深层地质形成中是碳捕获和储存(CCS)过程的一部分。将CO2储存到深地质形成的过程定义为地质二氧化碳螯合或CO2地理封存。将CO2注入储存器并不能保证安全存储,因为CO2可以泄回到表面和/或可以污染其他能量,矿物和/或地下水资源的特定地层。两种机制控制保证的存储完整性,在地质结构内遏制,最大限度地减少井筒泄漏的潜力(Espie,2005)。本研究涉及利用井筒元件的井筒泄漏机构涉及,这将扩展到整个井筒系统。为了在实践中获得更好的成功机会,成功的CCS取决于与井筒的局部流动相关的小型泄漏问题。我们对储存目的的井筒性能的了解仍然很弱。本文是通过引入井筒密封效率指数分析井眼元素的系列中的第一个。井筒密封效率可以用作不同井筒元件在同一位置的不同井筒元件之间的排名标准。此外,可以评估井筒元件的安全性能。

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