Suppression of the Segré-Silberberg effect by polymer additives

  • Jin, Daekwon; 
  • Park, Jee In; 
  • You, Jae Bem; 
  • Kim, Younghun; 
  • Lee, Hyomin; 
  • 외 1명
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초록

Particle-laden flow through conduits is ubiquitous in both natural and industrial systems. In such flows, particles often migrate across the main fluid stream, resulting in non-uniform spatial distribution owing to particle-fluid and particle-particle interactions. The most relevant lateral particle migration mechanism by particle-fluid interaction is the Segr & eacute;-Silberberg effect, which is induced by the inertial forces exerted on a particle, as the flow rate increases. However, methods to suppress it have not been suggested yet. Here, we demonstrate that adding a small amount of polymer to the particle-suspending solvent effectively suppresses the Segr & eacute;-Silberberg effect in a square channel. To accurately determine the position of the particles within the channel cross-sections, we devised a dual-view imaging system applicable to microfluidic systems. Our analyses show that the Segr & eacute;-Silberberg effect is effectively suppressed in a square microchannel due to the balance between the inertial and elastic forces at an optimal polymer concentration while maintaining nearly constant shear viscosity.

키워드

viscoelasticity; particle/fluid flow; microfluidics; PARTICLE MIGRATION; VISCOELASTIC FLOW; SUSPENDING LIQUID; RELAXATION-TIMES; RIGID SPHERES; PIPE-FLOW; DYNAMICS; NUMBER; DILUTE; TUBE
제목
Suppression of the Segré-Silberberg effect by polymer additives
저자
Jin, Daekwon; Park, Jee In; You, Jae Bem; Kim, Younghun; Lee, Hyomin; Kim, Ju Min
DOI
10.1017/jfm.2024.1234
발행일
2025-01-28
유형
Article
저널명
Journal of Fluid Mechanics
권
1004