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首页> 外文期刊>Journal of natural gas science and engineering >Assessment on the cement integrity of CO2 injection wells through a wellbore flow model and stress analysis
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Assessment on the cement integrity of CO2 injection wells through a wellbore flow model and stress analysis

机译:通过井筒流模型和应力分析评估CO2注入孔的水泥完整性

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This work aims at assessing the cement integrity during CO2 injection by illustrating the relevance of injection operations to the failure modes of cement. A single-phase flow model for pure CO2 is developed to provide the temperature and pressure profiles in the well and solved by a finite difference method. With the downhole temperature predicted by the flow model as a boundary condition, we present a mechanical model to estimate the stress state in the well section under plane-strain conditions as well as the stress intensity factor at a radial crack tip. This study introduces four failure factors corresponding to shear compressive failure, radial cracking, interfacial debonding, and fracture propagation. Further parametric studies are implemented to reveal the effects of injection operations, including injection temperature, rate, and time, on the above failure factors. They indicate that the injection rate is the most influential factor for cement integrity. High injection rates could cause radial cracking and its propagation as well as interfacial debonding but reduce the risk of shear compressive failure. Low injection temperatures or a long injection time would undermine the tensile and interfacial strength and extend the radial crack in cement while they benefit on shear compressive strength. The results provide guidelines to optimize injection operations for long-term well integrity during CO2 injection.
机译:这项工作旨在通过说明注射操作与水泥失效模式的相关性来评估CO2注射期间的水泥完整性。开发了一种用于纯CO2的单相流动模型,以提供井中的温度和压力曲线,并通过有限差分法解决。随着流量模型预测的井下温度作为边界条件,我们提出了一种机械模型,以估计平面 - 应变条件下的阱部分中的应力状态以及径向裂纹尖端处的应力强度因子。本研究引入了对应于剪切压缩失败,径向开裂,界面剥离和断裂繁殖的四种失效因子。实施进一步的参数研究以揭示注射操作的效果,包括注射温度,速率和时间,在上述故障因子上。它们表明注射率是水泥完整性最具影响力的因素。高注射率可能导致径向开裂及其传播以及界面剥离,但降低了剪切压缩失败的风险。低注射温度或长喷射时间会破坏拉伸和界面强度,并在剪切抗压强度受益时延长水泥中的径向裂纹。结果提供了在二氧化碳注射期间优化用于长期井完整性的注射操作的指导方针。

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