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Article Dans Une Revue Chemical Engineering Science Année : 2012

Impact of different confluent fluid streams viscosities on interconnected porous static mixer device

Résumé

We present both experimental and numerical simulations for a static mixing device that combines two fluids of different viscosities through a porous media. Experimentally, the mixing extent was determined by the CCD detection. We showed that the porous plug dramatically improved the mixer performance. The numerical simulation identified the zones where the mixing was developed in the system as the mixing component mass flow could be plotted. The mixing principally occurred downstream of the porous plug, which initiated a jet flow due to the viscosities contrast of the two fluids. For a better understanding of the impact of porous on mixing we achieved a morphological study from the X-rays' micro-CT-images. It gave the porosity of the porous and showed an anisotropy of the geometry and then on the permeability, which certainly played a part in the mixing performance. (C) 2012 Elsevier Ltd. All rights reserved.

Dates et versions

hal-01459968 , version 1 (07-02-2017)

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Jerome Vicente, Jean-Vincent Daurelle, Gabriel Brossard, Agneta Blom, Ann Douteur, et al.. Impact of different confluent fluid streams viscosities on interconnected porous static mixer device. Chemical Engineering Science, 2012, 72, pp.172-178. ⟨10.1016/j.ces.2011.12.034⟩. ⟨hal-01459968⟩
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