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PMID: 36619885 Published · epublish English Journal Article

An analysis of organism lifelines in an industrial bioreactor using Lattice-Boltzmann CFD.

Engineering in life sciences ·Vol. 23 ·No. 1 ·2023-01-00 ·页码 e2100159

Haringa C

Abstract

Euler-Lagrange CFD simulations, where the biotic phase is represented by computational particles (parcels), provide information on environmental gradients inside bioreactors from the microbial perspective. Such information is highly relevant for reactor scale-down and process optimization. One of the major challenges is the computational intensity of CFD simulations, especially when resolution of dynamics in the flowfield is required. Lattice-Boltzmann large-eddy simulations (LB-LES) form a very promising approach for simulating accurate, dynamic flowfields in stirred reactors, at strongly reduced computation times compared to finite volume approaches. In this work, the performance of LB-LES in resolving substrate gradients in large-scale bioreactors is explored, combined with the inclusion of a Lagrangian biotic phase to provide the microbial perspective. In addition, the hydrodynamic performance of the simulations is confirmed by verification of hydrodynamic characteristics (radial velocity, turbulent kinetic energy, energy dissipation) in the impeller discharge stream of a 29 cm diameter stirred tank. The results are compared with prior finite volume simulation results, both in terms of hydrodynamic and biokinetic observations, and time requirements.

Keywords
CFD Euler‐Lagrange Lattice Boltzmann fermentation lifeline analysis
作者与单位
共 1 位作者,点击展开单位 / ORCID
Haringa Cees
Bioprocess Engineering Biotechnology Department Delft University of Technology Delft the Netherlands.
Article Info
Journal
Engineering in life sciences
Abbr.
Eng Life Sci
ISSN
1618-0240
Published
2023-01-00
电子出版
2022-00-16
页码
e2100159
Language
English
Country/Region
Germany
NLM ID
101193313
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