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Lagrangian-Based Characterisation of Aerated Stirred Tank Reactors

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Lagrangian-Based Characterisation of Aerated Stirred Tank Reactors (Volumen 18) (Tienda española)

Ryan Rautenbach (Autor) ORCID

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Lectura de prueba, PDF (150 KB)
Indice, PDF (33 KB)

Industrial-scale bioreactors expose cells to complex and continuously changing hydrodynamic conditions that are difficult to reproduce at laboratory scale. Conventional scale-down approaches are often developed under single-phase conditions and evaluated primarily using mixing times.

This work combines experiments and validated Lattice-Boltzmann Large-Eddy Simulations to characterise the multiphase hydrodynamics of a 15 m³ mammalian cell culture stirred tank reactor. A Lagrangian, cell-centred perspective is used to quantify the conditions experienced by cells through velocity distributions, circulation times, residence times, and lifelines. Finite-Time Lyapunov Exponent fields additionally reveal coherent flow structures and transport barriers.

The methodology is applied to evaluate the Single Multi-Compartment Bioreactor as a representative scale-down system. The results show that similarity achieved under single-phase conditions does not necessarily persist during aeration, highlighting the need to incorporate multiphase lifeline metrics into scale-down development and evaluation.

ISBN-13 (Impresion) 9783689525781
ISBN-13 (E-Book) 9783689525798
DOI 10.61061/ISBN_ 9783689525781
Formato B5
Idioma Inglés
Numero de paginas 142
Laminacion de la cubierta mate
Edicion 1.
Serie Berichte aus dem Institut für Mehrphasenströmungen
Volumen 18
Lugar de publicacion Göttingen
Fecha de publicacion 24.07.2026
Clasificacion simple Tesis doctoral
Area Ciencias Ingeniería
Palabras claves Rührkesselreaktor, CFD, computational fluid dynamics, Numerik, lifelines, scale-down, scale transfer, Bioprocess Engineering, Bioreactor Hydrodynamics, Numerical Simulation, Stirred Tank Reactor (STR), Single Multi-Compartment Bioreactor (SMCB), Cell-Bioreactor Interaction, Fermentation Technology, Industrial Biotechnology