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首页> 外文期刊>International Journal of Greenhouse Gas Control >Well integrity assessment by a 1:1 scale wellbore experiment: Exposition to dissolved CO2 and overcoring
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Well integrity assessment by a 1:1 scale wellbore experiment: Exposition to dissolved CO2 and overcoring

机译:通过1:1比例的井眼实验评估井的完整性:暴露于溶解的CO2和过度取心

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摘要

In this work, we present the results of a new in situ experiment to complete the existing scientific dataset on well integrity in the context of CO2 storage. This experimentation has been designed to evaluate the sealing behaviour of a monitored well after mechanical and chemical stresses due to pressure and temperature changes (stage A) and due to the exposure to carbonated brine (stage B), before a final overcoring stage for retrieving the well system and the surrounding clay. The stageA has been the subject of a first publication (Manceau et al., 2015; Water Resour. Res., 51, 6093-6109) and the two latter stages are described in this paper. Multidisciplinary methods (hydraulic tests and modelling, fluid sampling and modelling, analysis of cement and clay samples on the overcore) are used to get better insight, in a realistic wellbore context, on the interplay between the geochemical questions, and the operational and construction issues. In particular, this study shows that when good integrity pre-exists before a well is in contact with carbonated water, the exposure to dissolved CO2 does not seem to lead to a degradation of the well hydraulic properties but rather to their improvement. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项工作中,我们提出了一个新的原位实验的结果,以完成有关二氧化碳封存情况下井完整性的现有科学数据集。该实验旨在评估由于压力和温度变化(阶段A)以及由于暴露于碳酸盐水(阶段B)而导致的机械应力和化学应力之后,在最终取芯阶段之前,对监测井的密封性能进行评估。井系统和周围的黏土。 stageA是第一个出版物的主题(Manceau等人,2015; Water Resour。Res。,51,6093-6109),后两个阶段在本文中进行了介绍。在现实的井筒环境中,使用多学科方法(液压测试和建模,流体采样和建模,在地心上的水泥和粘土样品的分析)可以更好地了解地球化学问题与运营和施工问题之间的相互作用。特别是,该研究表明,当井与碳酸水接触之前就已经存在良好的完整性,暴露于溶解的CO2似乎并不会导致井水力性能的下降,反而会改善井的水力性能。 (C)2016 Elsevier Ltd.保留所有权利。

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