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Effect of korteweg stress in miscible liquid two-layer flow in a microfluidic device
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Effect of korteweg stress in miscible liquid two-layer flow in a microfluidic device

Y. Sugii, K. Okamoto, A. Hibara, M. TokeshiT. Kitamori
Journal of Visualization, 卷.8(2), 頁碼.117-124
2005

摘要

Continuous flow chemical processing Interfacial tension Korteweg stress Micro PIV Miscible liquid flow Condensed Matter Physics Electrical and Electronic Engineering
Miscible liquid two-layer flow in a Y-shaped microfluidic device, which consists of microchannels with 120 μm in width and 35 μm in depth, is investigated by particle image velocimetry (PIV) to clarify the flow characteristics at fluid interfaces. The obtained velocities with a spatial resolution of 5.9 × 1.5 μm-2 around the interface between water and ethanol indicate an imbalance in shear stress at interface. The reason of the imbalance is to be the Korteweg stress generated by interfacial tension gradient due to a concentration gradient by diffusion in a miscible two-layer flow. The stress may cause an interfacial instability and destroy a uniform mixing in two flowing fluids in the case of large concentration gradient. © 2005 The Visualization Society of Japan and Ohmsha, Ltd.

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