Hydrodynamics in a disposable rectangular parallelepiped stirred bioreactor with elliptic pendulum motion paddle

作者:Collignon Marie Laure*; Droissart Laurent; Delafosse Angelique; Calvo Sebastien; Vanhamel Steven; Rodriguez Roman; Claes Tom; Moncaubeig Fabien; Peeters Ludovic; Crine Michel; Toye Dominique
来源:Biochemical Engineering Journal, 2015, 93: 212-221.
DOI:10.1016/j.bej.2014.10.011

摘要

Stainless steel bioreactors increasingly fall behind to their disposable counterparts in pharma research as they do not require cleaning or sterilization. This led company ATMI LifeSciences to develop the "Nucleo(TM)". Original in design, this disposable bioreactor comprises a rectangular parallelepiped plastic bag stirred by a paddle revolving in elliptic pendulum motion. Studies covering this bioreactor showed good homogeneity of culture medium as well as good productivity for animal cell cultures. To further explain these good performances, the flow inside the "Nucleo(TM)" had to be resolved. This paper focuses on the mean flow description, computed from stereo-PIV measurements performed in 20 verticals covering the whole volume of a 50 dm(3) Nucleo(TM) bioreactor. As the flow is already turbulent in the chosen agitation conditions, its dimensionless mean velocity field does not vary with the paddle rotational speed. Mean flow pattern exhibits an axial symmetry -same flow is observed in opposite quarters of the tank -and can be described as a three-dimensional helix coiled on itself to form a distorted horizontal torus which covers the whole tank volume. Mean velocity value is on average doubled in the cone swept by the paddle, and its two horizontal components are twice higher than its vertical ones. However, mean velocity remains significant everywhere and, in particular, no stagnant area is observed in tank corners. Our results thus confirm previous studies observations.

  • 出版日期2015-1-15