Turbulent Mixing of Two Immiscible Fluids

Author:

Lemenand Thierry1,Dupont Pascal1,Della Valle Dominique1,Peerhossaini Hassan21

Affiliation:

1. Thermofluids & Complex Flows Research Group, Laboratoire de Thermocinétique de Nantes, CNRS UMR 6607, Rue Christian Pauc, BP 50609, F-44306 Nantes, France

2. +33-2-40-68-31-42 +33-2-40-68-31-41

Abstract

Abstract The emulsification process in a static mixer HEV (high-efficiency vortex) in turbulent flow is investigated. This new type of mixer generates coherent large-scale structures, enhancing momentum transfer in the bulk flow and hence providing favorable conditions for phase dispersion. We present a study of the single-phase flow that details the flow structure, based on LDV measurements, giving access on the scales of turbulence. In addition, we discuss the liquid-liquid dispersion of oil in water obtained at the exit of the mixer/emulsifier. The generation of the dispersion is characterized by the Sauter diameter and described via a size-distribution function. We are interested in a local turbulence analysis, particularly the spatial structure of the turbulence and the turbulence spectra, which give information about the turbulent dissipation rate. Finally, we discuss the emulsifier efficiency and compare the HEV performance with existing devices.

Publisher

ASME International

Subject

Mechanical Engineering

Reference19 articles.

1. Experimental and numerical studies of exothermic reacting flows in a simulated heat exchanger passage;Phillips;Appl. Therm. Eng.

2. Droplets formation in turbulent mixing of two immiscible fluids in a new type of static mixer;Lemenand;Int. J. Multiphase Flow

3. Experimental study of the turbulent flow inside a motionless on-line mixer;Mokrani

4. Mokrani, A., Castelain, C., and Peerhossaini, H., 2005, “Experimental study of the influence of the rows of vortex generators on turbulence structure in a tube,” Exp. Fluids0723-4864 (submitted for publication).

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