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Effects of Pore Geometry on Flowing Foam Dynamics in 3D-Printed Porous Media

机译:孔几何形状对3D打印多孔介质中流动泡沫动力学的影响

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摘要

Foam flow in porous media is important in several environmental and industrial applications including soil remediation and enhanced oil recovery. The behaviour of foam is greatly influenced by transport properties of porous media, properties of foam and the fluid residing in porous media. We conducted a series of experiments to investigate the effects of pore geometry on foam flow in porous media and its implications for hydrocarbon displacement. We fabricated four porous media with well-defined pore throat size distributions, permeability and angularity by means of 3D printing technology. The models were initially saturated with oil. Gas and surfactant solution were subsequently injected into the model simultaneously for in situ generation of foam to displace the oil. Displacement dynamics were recorded using an automated imaging setup. Analysis of the pore-scale images revealed that the injected pore volumes required for the initiation of foam generation decreased as the pore size of porous media increased, presumably due to the lower entry capillary pressure. For the same pore throat size range, changes in the permeability due to increased number of pore throats did not appear to have a significant influence on the overall recovery of oil. Our results illustrate the impact of grain angularity on foam generation owing to its influence on the pore-to-throat aspect ratio and capillary pressure gradient.
机译:多孔介质中的泡沫流动在多种环境和工业应用中都很重要,包括土壤修复和提高采油率。泡沫的行为在很大程度上受到多孔介质的传输特性,泡沫的特性以及存在于多孔介质中的流体的影响。我们进行了一系列实验,以研究孔隙几何形状对多孔介质中泡沫流动的影响及其对烃驱替的影响。我们通过3D打印技术制造了四种具有明确的孔喉尺寸分布,渗透性和成角度的多孔介质。模型最初充满了油。随后将气体和表面活性剂溶液同时注入模型中,以原位产生泡沫来置换油。使用自动成像设置记录位移动态。对孔尺度图像的分析表明,随着多孔介质孔径的增加,开始产生泡沫所需的注入孔体积减少,这可能是由于较低的进入毛细管压力所致。对于相同的孔喉尺寸范围,由于孔喉数量增加而引起的渗透率变化似乎对油的总采收率没有重大影响。我们的结果表明,由于颗粒角对孔喉纵横比和毛细管压力梯度的影响,颗粒角对泡沫产生的影响。

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