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The effect of foam quality, particle concentration and flow rate on nanoparticle-stabilized CO2 mobility control foams

机译:泡沫质量,颗粒浓度和流速对纳米颗粒稳定的CO2迁移率控制泡沫的影响

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CO _(2) foam is regarded as a promising technology and widely used in the oil and gas industry, not only to improve oil production, but also to mitigate carbon emissions through their capture. This paper describes a series of nanoparticle-stabilized CO _(2) foam generation and foam flow experiments under reservoir conditions. Stable CO _(2) foam was generated when CO _(2) and a nanosilica dispersion flowed through the core sample under 1500 psi and 25?°C. The foam changed from a fine-texture foam to a coarse foam as the foam quality increased from 20% to 95%. Foam mobility increased slightly with the increasing foam quality from 20% to 80% and then rapidly from 80% to 95%. A stable CO _(2) foam was generated as the nanosilica concentration increased to 2500 ppm. Foam mobility and resistance factor increased with the increasing nanosilica concentration. As the injection flow rate increased to 60 ml h ~(?1) , stable and fine-texture CO _(2) foam was obtained. Foam mobility was observed to remain almost constant as the injection flow rate increased from 60 ml h ~(?1) to 150 ml h ~(?1) .
机译:CO _(2)泡沫被认为是一种有前途的技术和广泛应用于石油和天然气行业,不仅可以提高石油生产,还可以通过捕获减轻碳排放。本文描述了一系列纳米粒子稳定的CO _(2)泡沫产生和储层条件下的泡沫流实验。当CO_(2)和流过1500 psi和25℃下的核样品流过核心样品时产生稳定的CO_(2)泡沫。由于泡沫质量从20%增加到95%,泡沫从细纹理泡沫变为粗糙泡沫。泡沫迁移率略微升高,泡沫质量增加到20%至80%,然后从80%迅速增加至95%。产生稳定的CO_(2)泡沫,因为纳米硅浓度增加至2500ppm。泡沫迁移率和电阻因子随着纳米硅浓度的增加而增加。由于注射流速增加至60mL H〜(α1),获得稳定和细纹理CO_(2)泡沫。观察到泡沫迁移率以保持几乎恒定,因为注射流速从60ml H〜(α1)增加到150ml H〜(α1)。

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