Characterization of gas-liquid flow mixing by means of helical static mixer


Characterization of gas-liquid flow mixing by means of helical static mixer

Rabha, S.; Krepper, E.; Zidouni, F.; Grugel, F.; Schubert, M.; Rzehak, R.; Lucas, D.; Hampel, U.

Static mixer is an attractive alternative to conventional gas-liquid contactor, widely used for mixing and heat transfer between two fluids in various process applications. Knowledge on the limits of number and dimension of the static mixer element are important for packing optimization for desired mixing. The present work are designed to investigate the flow mixing pattern in a upward gas-liquid (air - water) flows in a column packed with helical static mixer. Experiments are carried out in a column of diameter (DT = 0.08 m) packed with helical static mixer (length 80 mm/ diameter 80 mm) using ultrafast electron beam X- ray tomography. The effect of number of static mixer element (3 – 9), liquid velocity (UL = 0.02 & 0.6 m/s), gas velocity (0.15 ≤ UG ≤ 0.6 m/s) on hydrodynamic parameters like gas holdup, bubble size distribution, etc. and pressure drop across the static mixer are studied. Corresponding CFD simulations using the Euler-Euler model implemented in CFX 14 for some selective cases are also done. The predicted axial and radial gas phase distribution considering different mono-dispersed bubbles classes (3, 5.8 and 8 mm) and poly-dispersed bubble classes are studied and validated with experimental results.

Keywords: Static mixer; gas-liquid flows; ultrafast electron beam X-ray tomography; Euler-Euler

Involved research facilities

  • TOPFLOW Facility
  • Lecture (Conference)
    11th Multiphase flow conference and short course, 26.-28.11.2013, Dresden, Germany

Permalink: https://www.hzdr.de/publications/Publ-19477