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Gas/Water Flow in Porous Media in the Presence of Adsorbed Polymer: Experimental Study on Non-Darcy Effects

机译:吸附聚合物存在下多孔介质中的气/水流动:非达西效应的实验研究

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摘要

The objective of this paper is to report some experimental investigations on the effect of polymer adsorption on gas/water flow in non-Darcy regimes in homogeneous porous media, in contrast to previously available analyses focused mainly on the Darcy regime. Our investigation concentrates on gas flow either at low mean pressure, when Klinkenberg effects (or gas slippage) must be considered, or at high flow rates, when inertial effects are significant. The experimental study reported here consists of water and nitrogen injections into various silicon carbide model granular packs having different permeabilities. Experiments are carried out at different water saturations before and after polymer adsorption over flow regimes ranging from slip flow to inertial flow. In good agreement with previous works, in the Darcy regime, we observe an increase in irreducible water saturation and a strong reduction in the relative permeability to water, while the relative permeability to gas is slightly affected. At low mean pressure in the gas phase, the magnitude of the Klinkenberg effect is found to increase with water saturation in the absence of polymer, whereas for the same water saturation, the presence of an adsorbed polymer layer reduces this effect. In the inertial regime, a reduction of inertial effects is observed when gas is injected after polymer adsorption, taking into account water-saturation and permeability modifications. Experimental data are discussed according to hypotheses put forth to explain these effects. Consequences for practical use are also put under prospect.
机译:本文的目的是报告一些实验研究,以研究均质多孔介质中非达西地区聚合物吸附对气体/水流的影响,与此相反,现有的主要针对达西地区的分析则相反。我们的研究集中在必须考虑克林肯贝格效应(或瓦斯滑移)的低平均压力下或在惯性效应显着的高流量下。此处报道的实验研究包括将水和氮注入具有不同渗透率的各种碳化硅模型颗粒填料中。在从滑流到惯性流的各种流态下,在聚合物吸附前后,在不同的水饱和度下进行实验。与以前的工作很好地吻合,在达西政权下,我们观察到不可减少的水饱和度增加,相对水的渗透率大大降低,而相对气体的相对渗透率受到轻微影响。在气相中的平均压力较低时,发现在没有聚合物的情况下,克林根贝格效应的幅度随水饱和度的增加而增加,而对于相同的水饱和度,吸附的聚合物层的存在会降低该效应。在惯性状态下,考虑到水饱和度和渗透率的变化,在聚合物吸附后注入气体时,惯性效应会降低。根据提出的解释这些影响的假设讨论了实验数据。实际使用的后果也可以预见。

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