4.5 Article

Improvement of rectification effects in diffuser/nozzle structures with viscoelastic fluids

Journal

BIOMICROFLUIDICS
Volume 2, Issue 3, Pages -

Publisher

AMER INST PHYSICS
DOI: 10.1063/1.2959099

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Funding

  1. Ministry of Education, Singapore [RG22/05]

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This paper reports the improvement of rectification effects in diffuser/nozzle structures with viscoelastic fluids. Since rectification in a diffuser/nozzle structure with Newtonian fluids is caused by inertial effects, micropumps based on this concept require a relatively high Reynolds numbers and high pumping frequencies. In applications with relatively low Reynolds numbers, anisotropic behavior can be achieved with viscoelastic effects. In our investigations, a solution of dilute polyethylene oxide was used as the viscoelastic fluid. A microfluidic device was fabricated in silicon using deep reactive ion etching. The microfluidic device consists of access ports for pressure measurement, and a series of ten diffuser/nozzle structures. Measurements were carried out for diffuser/nozzle structures with opening angles ranging from 15 S to 60 S. Flow visualization, pressure drop and diodicity of de-ionized water and the viscoelastic fluid were compared and discussed. The improvement of diodicity promises a simple pumping concept at low Reynolds numbers for lab-on-a-chip applications. (c) 2008 American Institute of Physics.

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