Model-Based Prediction of Perceived Light Flashing in Recirculated Inclined Wavy-Bottomed Photobioreactors
Microalgae biomass production rate in short light-path photobioreactors potentially can be improved by mixing-induced flashing light regimes. A cascade photobioreactor features a thin liquid layer flowing down a sloping, wavy-bottomed surface where liquid flow exhibits peculiar local recirculation h...
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doaj-7a9278bbdb08405e9501e2cc0344461a2021-07-23T14:03:10ZengMDPI AGProcesses2227-97172021-07-0191158115810.3390/pr9071158Model-Based Prediction of Perceived Light Flashing in Recirculated Inclined Wavy-Bottomed PhotobioreactorsGiuseppe Olivieri0Monica Moroni1Marcel Janssen2Luca Piersanti3Daniela Mezza4Marco Bravi5Bioprocess Engineering Group, Wageningen University and Research, Droevendaalsesteeg 1, 6700AA Wageningen, The NetherlandsDepartment of Civil, Constructional and Environmental Engineering (DICEA), Sapienza University of Rome, Via Eudossiana 18, 00184 Rome, ItalyBioprocess Engineering Group, Wageningen University and Research, Droevendaalsesteeg 1, 6700AA Wageningen, The NetherlandsDepartment Chemical Engineering Materials Environment (DICMA), Sapienza Università di Roma, Via Eudossiana 18, 00184 Rome, ItalyDepartment Chemical Engineering Materials Environment (DICMA), Sapienza Università di Roma, Via Eudossiana 18, 00184 Rome, ItalyDepartment Chemical Engineering Materials Environment (DICMA), Sapienza Università di Roma, Via Eudossiana 18, 00184 Rome, ItalyMicroalgae biomass production rate in short light-path photobioreactors potentially can be improved by mixing-induced flashing light regimes. A cascade photobioreactor features a thin liquid layer flowing down a sloping, wavy-bottomed surface where liquid flow exhibits peculiar local recirculation hydrodynamics, potentially conducive to an ordered flashing light regime. This article presents a model-based analysis of the frequency distribution of perceived irradiance in said wavy-bottomed photobioreactor. The model combines a Lagrangian description of the motion of individual cells, in turn derived from the hydrodynamic parameters of the photobioreactor extracted from an experimentally validated Computational Fluid Dynamic model, with a simplified description of the irradiance field across the culture thickness, down to the spectral analysis of perceived irradiance. The main finding of the work is that the wavy bottomed photobioreactor provides a ‘robust’ spectral excitation to the circulating microalgae up to 3 Hz frequency, while in flat panels and bubble columns excitation decays evenly at a 24 db/octave rate. This analysis paves the way to improving the light flashing performance of the wavy-bottomed photobioreactor with respect to geometry (cavity size and installation inclination) and operation (flow rate).https://www.mdpi.com/2227-9717/9/7/1158photobioreactorscascade photobioreactorwavy-bottomed photobioreactorflat panelbubble columncomputational fluid dynamics |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Giuseppe Olivieri Monica Moroni Marcel Janssen Luca Piersanti Daniela Mezza Marco Bravi |
spellingShingle |
Giuseppe Olivieri Monica Moroni Marcel Janssen Luca Piersanti Daniela Mezza Marco Bravi Model-Based Prediction of Perceived Light Flashing in Recirculated Inclined Wavy-Bottomed Photobioreactors Processes photobioreactors cascade photobioreactor wavy-bottomed photobioreactor flat panel bubble column computational fluid dynamics |
author_facet |
Giuseppe Olivieri Monica Moroni Marcel Janssen Luca Piersanti Daniela Mezza Marco Bravi |
author_sort |
Giuseppe Olivieri |
title |
Model-Based Prediction of Perceived Light Flashing in Recirculated Inclined Wavy-Bottomed Photobioreactors |
title_short |
Model-Based Prediction of Perceived Light Flashing in Recirculated Inclined Wavy-Bottomed Photobioreactors |
title_full |
Model-Based Prediction of Perceived Light Flashing in Recirculated Inclined Wavy-Bottomed Photobioreactors |
title_fullStr |
Model-Based Prediction of Perceived Light Flashing in Recirculated Inclined Wavy-Bottomed Photobioreactors |
title_full_unstemmed |
Model-Based Prediction of Perceived Light Flashing in Recirculated Inclined Wavy-Bottomed Photobioreactors |
title_sort |
model-based prediction of perceived light flashing in recirculated inclined wavy-bottomed photobioreactors |
publisher |
MDPI AG |
series |
Processes |
issn |
2227-9717 |
publishDate |
2021-07-01 |
description |
Microalgae biomass production rate in short light-path photobioreactors potentially can be improved by mixing-induced flashing light regimes. A cascade photobioreactor features a thin liquid layer flowing down a sloping, wavy-bottomed surface where liquid flow exhibits peculiar local recirculation hydrodynamics, potentially conducive to an ordered flashing light regime. This article presents a model-based analysis of the frequency distribution of perceived irradiance in said wavy-bottomed photobioreactor. The model combines a Lagrangian description of the motion of individual cells, in turn derived from the hydrodynamic parameters of the photobioreactor extracted from an experimentally validated Computational Fluid Dynamic model, with a simplified description of the irradiance field across the culture thickness, down to the spectral analysis of perceived irradiance. The main finding of the work is that the wavy bottomed photobioreactor provides a ‘robust’ spectral excitation to the circulating microalgae up to 3 Hz frequency, while in flat panels and bubble columns excitation decays evenly at a 24 db/octave rate. This analysis paves the way to improving the light flashing performance of the wavy-bottomed photobioreactor with respect to geometry (cavity size and installation inclination) and operation (flow rate). |
topic |
photobioreactors cascade photobioreactor wavy-bottomed photobioreactor flat panel bubble column computational fluid dynamics |
url |
https://www.mdpi.com/2227-9717/9/7/1158 |
work_keys_str_mv |
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