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Mesoscale understanding of capillarity driven two-phase flow in a packed bed architecture

机译:中尺度理解填充床体系中毛细作用驱动的两相流

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摘要

Understanding the displacement dynamics in capillarity driven two-phase flow in packed bed architectures is of fundamental importance. In this work, the role of mesoscale physics due to the underlying capillarity-wettability interaction on the two-phase flow in a sphere-packed architecture is presented. The influence of different pore surface wettability, porosity and pressure gradient on the two-phase flow behavior has been studied. The mesoscale study exhibits interesting pattern formations due to the invasion of a non-wetting fluid and surface adherence owing to the underlying wettability-capillarity characteristics. The emergence of finger like invasion pattern in a hydrophobic architecture is observed while a stable fluid front predominates in a hydrophilic structure. This study further reveals that a hydrophilic architecture is prone to elevated saturation limit for the invading fluid, while a larger pressure gradient can promote pronounced finger-like patterns. (C) 2019 Elsevier Ltd. All rights reserved.
机译:了解填充床结构中毛细作用驱动的两相流中的位移动力学至关重要。在这项工作中,提出了中尺度物理的作用,这是由于球形填充结构中两相流上潜在的毛细作用-可湿性相互作用所致。研究了不同孔隙表面的润湿性,孔隙率和压力梯度对两相流动行为的影响。中尺度研究显示出有趣的图案形成,这归因于非润湿性流体的侵入和由于潜在的润湿性-毛细特性而引起的表面粘附。在疏水结构中观察到手指状侵入模式的出现,而在亲水结构中稳定的流体前沿占主导。这项研究进一步揭示了亲水结构易于增加侵入流体的饱和极限,而较大的压力梯度则可促进明显的手指状图案。 (C)2019 Elsevier Ltd.保留所有权利。

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