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Experimental Study of Stability and Integrity of Cement in Wellbores Used for CO_2 Storage

机译:CO_2储存井筒中水泥稳定性和完整性的试验研究。

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This paper examines the results obtained from several sets of experimental work conducted on cement deterioration in environments similar to those found in CO_2 injection and storage projects.rnIn order to investigate various changes in macroscopic and microscopic properties and behaviour of cement in presence of sulphate ions and CO_2, several sets of experiments were conducted.rnThe study consisted of preparing and investigating the behaviour of several hundred samples of cement in presence of various concentrations of sulphate, from 0.1 wt% up to 6%, as well as CO_2 at 15,160 kPa and 55℃. The effect of sulphate ions on cement was studied at 30℃, 55℃ and 75℃. The two common classes of cement of Type 10 and Class G were tested during this study. A total of 300 identical cubic and 400 identical cylindrical samples were tested. The change in permeability, compressive strength, and shear and hydraulic bonding strength for these samples were monitored after 2,4, 6,8, 10 and 12 months.rnLaboratory results showed that sulphate ions and CO_2 improve the performance of cement during the first few months. However, the effect is reversed under prolonged experiments. The highest reduction in performance was observed for hydraulic shear bonding, which indicates that the highest risk of CO_2 leakage is through pathways between the cement and casing.
机译:本文研究了在与CO_2注入和封存项目相似的环境中进行的几组关于水泥劣化的实验工作所获得的结果。为了研究在硫酸根离子存在下水泥的宏观和微观特性及行为的各种变化。 CO_2,进行了几组实验。研究包括准备和研究数百种水泥样品的行为,这些样品在浓度从0.1 wt%到6%的各种硫酸盐存在下以及在15160 kPa和55的CO_2下℃。在30℃,55℃和75℃下研究了硫酸根离子对水泥的影响。在这项研究中测试了两种常见的10型和G级水泥。总共测试了300个相同的立方样品和400个相同的圆柱样品。在2,4、6、8、10和12个月后监测这些样品的渗透率,抗压强度以及抗剪强度和水硬性粘结强度的变化。实验室结果表明,硫酸根离子和CO_2可以改善水泥的性能。个月。但是,在长时间的实验中,效果却相反。对于水力剪切粘结,性能下降最大,这表明CO_2泄漏的最大风险是通过水泥和套管之间的通道。

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