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Dynamics of a two-layer immiscible fluid system exposed to ultrasound
被引:0
|作者:
Hoque, S. Z.
[1
]
Sen, A. K.
[1
]
机构:
[1] Indian Inst Technol Madras, Dept Mech Engn, Micro Nano Bio Fluid Unit, Chennai 600036, India
关键词:
ACOUSTIC RADIATION PRESSURE;
AQUEOUS DROPLETS;
INTERFACE;
DRIVEN;
DROPS;
MICROPARTICLES;
MANIPULATION;
SIMULATION;
MOTION;
FLOWS;
D O I:
10.1121/10.0025023
中图分类号:
O42 [声学];
学科分类号:
070206 ;
082403 ;
摘要:
The relocation dynamics of a two-layer immiscible fluid system exposed to bulk acoustic waves using simulations and experiments are reported. A theoretical formulation of the acoustic radiation pressure (ARP) acting on the interface reveals that ARP is a nonlinear function of the impedance contrast. It has been shown that the force acting on the interface is the simple sum of the ARP and the interfacial tension, which is dependent on the angle of the interface. It was discovered that although the acoustic radiation force is directed from high-impedance fluid (HIF) to low-impedance fluid (LIF), the final steady-state configuration depends on the wall-fluid contact angle (CA). Our study reveals that the HIF and LIF would relocate to the channel center for CA > 110 degrees , and CA < 70 degrees , respectively, while complete flipping of the fluids is observed for intermediate angles. The forces relocate the fluids in the channel, generally, by a clockwise or anticlockwise rotation. Here, it is demonstrated that the direction of this twist can be determined by the relative densities and wettabilities of the two fluids. (c) 2024 Acoustical Society of America.
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页码:1655 / 1666
页数:12
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