Miscible fluids mixing via alternating injection in a radial Hele-Shaw cell: experimental and numerical studies

IF 1.5 4区 工程技术 Q3 MECHANICS Journal of Mechanics Pub Date : 2022-01-01 DOI:10.1093/jom/ufac043
C. Chou, Avdhesh Kumar, Po-Chun Lu, Ching-Yao Chen
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引用次数: 1

Abstract

An alternating injection scheme is experimentally employed to study the mixing performance of miscible viscous fluids in a radial Hele-Shaw cell. The concept of the covered area is introduced to quantify the mixing efficiency and various numerical simulations are performed to support and verify the experimental results. It has been observed that the alternating injection can improve the mixing efficiency, depending on the prominence of the channeling interactions. The alternating injection can effectively improve the mixing efficiency under certain conditions, where weaker fingering interactions are dominated by diffusive mixing. However, the results under the high Péclet number conditions are inconsistent, i.e. the mixing efficiency is reduced due to the emergence of orderly viscous fingers prevailing random chaotic interactions. This phenomenon is similar to the channeling interaction in the heterogeneous permeability fields in which less viscous fluid flows through favorable paths due to the local pressure difference between two successively emerging fingers.
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在径向Hele-Shaw槽中通过交替注射混合混相流体:实验和数值研究
采用交替注入方案对径向Hele-Shaw槽内混相粘性流体的混合性能进行了实验研究。引入覆盖面积的概念来量化混合效率,并进行了各种数值模拟来支持和验证实验结果。已经观察到交替注入可以提高混合效率,这取决于通道相互作用的突出程度。在扩散混合为主、指法作用较弱的特定条件下,交替注入能有效提高混合效率。然而,高psamclet数条件下的结果并不一致,即由于出现有序的粘性手指而导致随机混沌相互作用,从而降低了混合效率。这种现象类似于非均质渗透率场中的通道相互作用,其中粘性较小的流体由于两个连续出现的手指之间的局部压力差而通过有利的路径流动。
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来源期刊
Journal of Mechanics
Journal of Mechanics 物理-力学
CiteScore
3.20
自引率
11.80%
发文量
20
审稿时长
6 months
期刊介绍: The objective of the Journal of Mechanics is to provide an international forum to foster exchange of ideas among mechanics communities in different parts of world. The Journal of Mechanics publishes original research in all fields of theoretical and applied mechanics. The Journal especially welcomes papers that are related to recent technological advances. The contributions, which may be analytical, experimental or numerical, should be of significance to the progress of mechanics. Papers which are merely illustrations of established principles and procedures will generally not be accepted. Reports that are of technical interest are published as short articles. Review articles are published only by invitation.
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