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Reactive Flows in Porous Media: Challenges in Theoretical and Numerical Methods
Annual Review of Chemical and Biomolecular Engineering ( IF 7.6 ) Pub Date : 2021-06-07 , DOI: 10.1146/annurev-chembioeng-092920-102703
Anthony J C Ladd 1 , Piotr Szymczak 2
Affiliation  

We review theoretical and computational research, primarily from the past 10 years, addressing the flow of reactive fluids in porous media. The focus is on systems where chemical reactions at the solid–fluid interface cause dissolution of the surrounding porous matrix, creating nonlinear feedback mechanisms that can often lead to greatly enhanced permeability. We discuss insights into the evolution of geological forms that can be inferred from these feedback mechanisms, as well as some geotechnical applications such as enhanced oil recovery, hydraulic fracturing, and carbon sequestration. Until recently, most practical applications of reactive transport have been based on Darcy-scale modeling, where averaged equations for the flow and reactant transport are solved. We summarize the successes and limitations of volume averaging, which leads to Darcy-scale equations, as an introduction to pore-scale modeling. Pore-scale modeling is computationally intensive but offers new insights as well as tests of averaging theories and pore-network models. We include recent research devoted to validation of pore-scale simulations, particularly the use of visual observations from microfluidic experiments.

中文翻译:


多孔介质中的反应流:理论和数值方法的挑战

我们回顾了主要来自过去 10 年的理论和计算研究,以解决多孔介质中反应流体的流动。重点是在固液界面发生化学反应导致周围多孔基质溶解的系统,产生非线性反馈机制,通常会导致渗透率大大提高。我们讨论了可以从这些反馈机制以及一些岩土工程应用(如提高采油率、水力压裂和碳封存)推断出的地质形态演变的见解。直到最近,反应输运的大多数实际应用都是基于达西尺度建模,其中求解了流动和反应物输运的平均方程。我们总结了体积平均的成功和局限性,这导致了 Darcy 尺度方程,作为对孔隙尺度建模的介绍。孔隙尺度建模是计算密集型的,但提供了新的见解以及平均理论和孔隙网络模型的测试。我们包括最近致力于验证孔隙尺度模拟的研究,特别是使用来自微流体实验的视觉观察。

更新日期:2021-06-08
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