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Investigation of foam flow in a 3D printed porous medium in the presence of oil

机译:在油存在下,在3D印刷多孔介质中对泡沫流动的研究

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Foams demonstrate great potential for displacing fluids in porous media which is applicable to a variety of subsurface operations such as the enhanced oil recovery and soil remediation. The application of foam in these processes is due to its unique ability to reduce gas mobility by increasing its effective viscosity and to divert gas to un-swept low permeability zones in porous media. The presence of oil in porous media is detrimental to the stability of foams which can influence its success as a displacing fluid. In the present work, we have conducted a systematic series of experiments using a well-characterised porous medium manufactured by 3D printing technique to evaluate the influence of oil on the dynamics of foam displacement under different boundary conditions. The effects of the type of oil, foam quality and foam flow rate were investigated. Our results reveal that generation of stable foam is delayed in the presence of light oil in the porous medium compared to heavy oil. Additionally, it was observed that the dynamics of oil entrapment was dictated by the stability of foam in the presence of oil. Furthermore, foams with high gas fraction appeared to be less stable in the presence of oil lowering its recovery efficiency. Pore-scale inspection of foam-oil dynamics during displacement revealed formation of a less stable front as the foam quality increased, leading to less oil recovery. This study extends the physical understanding of oil displacement by foam in porous media and provides new physical insights regarding the parameters influencing this process. (C) 2016 Published by Elsevier Inc.
机译:泡沫表现出在多孔介质中赋予流体的巨大潜力,其适用于各种地下操作,例如增强的储油和土壤修复。泡沫在这些过程中的应用是由于其通过增加其有效粘度和将气体转移到多孔介质中的未扫描低渗透区来降低气体迁移率的独特能力。多孔介质中油的存在对泡沫的稳定性有害,这可以影响其成功作为置换液。在本作本作中,我们已经使用3D印刷技术制造的良好特征的多孔介质进行了系统系列实验,以评估油对不同边界条件下泡沫位移动态的影响。研究了油,泡沫质量和泡沫流速的效果。我们的结果表明,与重油相比,多孔介质的轻油存在延迟稳定泡沫的产生。另外,观察到油夹带的动态被油状物存在的泡沫稳定性决定。此外,具有高气体级分的泡沫在降低其恢复效率的情况下,具有高气体级分的泡沫似乎不太稳定。在位移期间泡沫 - 油动力学的孔隙测量检查显示,随着泡沫质量的增加,形成不太稳定的前沿,导致较少的储油。本研究扩展了多孔介质中的泡沫对油位移的物理理解,并为影响该过程的参数提供了新的物理见解。 (c)2016年由elsevier公司发布

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