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Establishing and Maintaining the Integrity of Wells used for Sequestration of C02

机译:建立和维护用于封存CO2的井的完整性

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There is a tendency for the Carbon Capture and Storage (CCS) industry to believe that everything is already known about CO_2 injection wells, based upon the petroleum industry's experience of miscible fluid injection for the purposes of tertiary oil recovery, combined with the general experience of gas re-injection and gas production internationally. In fact, analysis of the technical, issues identifies that CO_2 injection wells for sequestration may be more challenging in a number of ways, both in the fluids and pressures they must handle and the long term duration for which full well integrity will be required. Well integrity means the achievement of fluid containment and pressure containment within the well throughout its whole life cycle. The technical challenges of CO_2 injection wells are highly dependent on the individual well design parameters, principally the formation being injected into (saline aquifer versus depleted gas formation) and the quality (impurity levels) found in the CO_2 source gas. These factors will impact the potential corrosion and other material degradation challenges which may threaten the well components including injection tubing, injection casing, cement and packer materials. The long term integrity of these components is critical to the injection phase of the life and the suspension and abandonment phases (depending upon the strategy selected for well abandonment). A key part of the acceptance of CO_2 sequestration as a safe and reliable greenhouse gas control mechanism will be the proof that the well is truly leak-free. This integrity management element requires a comprehensive monitoring and pro-active warning system which highlights developing integrity issues before they become acute. Key well parameters requiring daily monitoring and intermittent testing will be identified in line with industry international standards and regulations. Acceptance criteria for well test results will be defined in the context of a CO_2 injection well. The oil and gas industry is only now commencing with comprehensive well integrity management systems and the CCS industry can make good use of the experience which is being established and software products'1' which are proven to cover the comprehensive challenge that carbon dioxide injection wells represent.
机译:碳捕集与封存(CCS)行业有一种趋势,即根据石油行业为三次采油目的而混溶性流体注入的经验,再加上石油行业的一般经验,相信CO_2注入井已为人所知。国际上的天然气再注入和天然气生产。实际上,对技术问题的分析表明,用于封存的CO_2注入井可能在许多方面更具挑战性,无论是在其必须处理的流体和压力方面,还是需要完整井完整性的长期持续时间。井的完整性意味着在整个生命周期内在井内实现了流体密闭性和压力密闭性。 CO_2注入井的技术挑战高度依赖于各个井的设计参数,主要取决于注入的地层(盐水层与枯竭的天然气层)和CO_2源气中的质量(杂质水平)。这些因素将影响潜在的腐蚀和其他材料降解挑战,这些挑战可能威胁井组件,包括注入管,注入套管,水泥和封隔器材料。这些组分的长期完整性对于生命的注入阶段以及悬浮和废弃阶段(取决于为良好废弃而选择的策略)至关重要。将CO_2隔离作为一种安全可靠的温室气体控制机制被接受的关键部分将是该井真正无泄漏的证明。这个完整性管理要素需要一个全面的监视和主动预警系统,该系统应在出现严重问题之前着重指出正在发展的完整性问题。将根据行业国际标准和法规确定需要日常监控和间歇测试的关键油井参数。试井结果的验收标准将在CO_2注入井的范围内进行定义。石油和天然气行业才刚刚开始使用全面的井完整性管理系统,并且CCS行业可以充分利用正在建立的经验,并证明软件产品“ 1”已解决了二氧化碳注入井所面临的全面挑战。

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