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Fluid-fluid interaction during miscible and immiscible displacement under ultrasonic waves

机译:超声波混溶和非混溶位移过程中的流体相互作用

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This paper aims at identifying and analyzing the influence of high-frequency, high-intensity ultrasonic radiation at the interface between immiscible (different types of oils and aqueous solutions) and miscible (different types of oil and solvent) fluids. An extensive set of Hele-Shaw type experiments were performed for several viscosity ratios, and interfacial tension. Fractal analysis techniques were applied to quantify the degree of fingering and branching. This provided a rough assessment of the degree of perturbation generated at the interface when the capillary forces along with the viscous forces are effective. Miscible Hele-Shaw experiments were also presented to isolate the effect of viscous forces. We found that ultrasound acts to stabilize the interfacial front, and that such effect is most pronounced at low viscosity ratios.
机译:本文旨在识别和分析高频,高强度超声波辐射在不混溶(不同类型的油和水溶液)与混溶(不同类型的油和溶剂)流体之间的界面上的影响。对几种粘度比和界面张力进行了广泛的Hele-Shaw型实验。分形分析技术被用于量化指和分支的程度。当毛细管力和粘性力一起起作用时,这提供了对在界面处产生的扰动程度的粗略评估。还提出了可混溶的Hele-Shaw实验来隔离粘性力的影响。我们发现超声波起到稳定界面前沿的作用,并且在低粘度比下这种作用最为明显。

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