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首页> 外文期刊>Advances in Water Resources >Wettability alteration implications on pore-scale multiphase flow in porous media using the lattice Boltzmann method
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Wettability alteration implications on pore-scale multiphase flow in porous media using the lattice Boltzmann method

机译:使用晶格Boltzmann方法对多孔介质孔隙尺度多相流动的润湿性改变影响

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Multiphase flow in porous media is found in a variety of engineering problems, including in technologies focused on satisfying the energy needs of an expanding global population while minimizing the effects of human activity on climate change. The objective of this study is to provide a better understanding of the importance and interdependence of the wettability-altered fraction, the degree of wettability alteration, and the spatially-varying contact angle assignment in influencing the pore-scale and macroscale flow properties. In order to conduct this investigation and analyze the effects on the relative permeability curves and fluid configurations, the Shan-Chen multi-relaxation-time multicomponent lattice Boltzmann model with explicit forcing is utilized, and domains of increasing fractions of wettability-altered pores are generated. We find that the fraction altered, the degree of alteration, and the accurate contact angle assignment are all correlated, and play a role to varying extents in influencing the flow behavior and the resulting relative permeability curves. The fraction altered displays the strongest effect, and the effects of the degree of alteration and contact angle assignment become more significant when a larger fraction of the sample has undergone wettability alteration. A sample that has undergone fractional wettability alteration results in a larger resistance to the overall flow and more tortuous flow paths, at intermediate saturations, in comparison to a strongly water/oil wetting domain. In a high porosity domain that is becoming increasingly oil-wet, the degree of wettability alteration has a more pronounced effect on the flow behavior of the oil phase, whereas the flow of the water phase remains dictated by the large pore spaces and the regions of the domain that have not undergone wettability alteration until a significant fraction of the domain has been altered. Moreover, a spatially-varying contact angle assignment becomes more important for a system with a large distribution of contact angles. The results demonstrate the correlations between wettability alteration and pore geometry and highlight the need for an algorithm that captures the true time-dependent wettability state of a porous medium sample.
机译:多孔介质中的多相流是在各种工程问题中发现的,包括专注于满足扩大全球人群的能量需求的技术,同时最大限度地减少人类活动对气候变化的影响。本研究的目的是提供更好地理解润湿性改变的分数,润湿性改变程度和空间不同的接触角分配在影响孔隙尺度和宏观流动性能方面的重要性和相互依存。为了进行这一调查并分析对相对渗透性曲线和流体配置的影响,利用了具有显式强制的山陈多松弛时间多组分晶格Boltzmann模型,并产生增加润湿性孔隙级分的域。我们发现,改变的分数,改变程度和准确的接触角分配都是相关的,并且在影响流动行为和所得到的相对渗透性曲线时发挥不同范围的作用。变化的级分显示​​出最强的效果,并且当样品的较大部分经历润湿性改变时,改变程度和接触角分配的效果变得更加显着。与强水/油润湿结构域相比,经过分数润湿性改变的样品导致在中间饱和状态下对中间饱和的整体流动和更曲折的流动路径产生较大的抵抗力。在变得越来越含油的高孔隙域中,润湿性变化程度对油相的流动性具有更明显的影响,而水相的流量仍然是由大孔隙空间和区域决定的直到域的大部分已经改变,尚未接受润湿性改变的域。此外,空间 - 变化的接触角分配对于具有大的接触角分布的系统更重要。结果证明了润湿性改变和孔隙几何形状之间的相关性,并突出了一种捕获多孔介质样品的真实依赖性润湿性状态的算法的需要。

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