Granular flow in static mixers by coupled DEM/CFD approach
The mixing process greatly influence the mixing efficiency, as well as the quality and the price of the intermediate and/or the final product. Static mixer is used for premixing action before the main mixing process, for significant reduction of mixing time and energy consumption. This type...
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Association of Chemical Engineers of Serbia
2016-01-01
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doaj-06feb1a4ec5a48669cffa117a34e9a6c2020-11-24T22:36:06ZengAssociation of Chemical Engineers of SerbiaHemijska Industrija 0367-598X2217-74262016-01-0170553954610.2298/HEMIND151013060P0367-598X1500060PGranular flow in static mixers by coupled DEM/CFD approachPezo Lato0Pezo Milada1Jovanović Aca2Kosanić Nenad3Petrović Aleksandar4Lević Ljubinko5Institute of General and Physical Chemistry, BelgradeInstitute of Nuclear Sciences “Vinča“, Laboratory for Thermal Engineering and Energy, BelgradeInstitute of General and Physical Chemistry, BelgradeFaculty of Mechanical Engineering, BelgradeFaculty of Mechanical Engineering, BelgradeFaculty of Technology, Novi SadThe mixing process greatly influence the mixing efficiency, as well as the quality and the price of the intermediate and/or the final product. Static mixer is used for premixing action before the main mixing process, for significant reduction of mixing time and energy consumption. This type of premixing action is not investigated in detail in the open literature. In this article, the novel numerical approach called Discrete Element Method is used for modelling of granular flow in multiple static mixer applications (1 - 3 Komax or Ross mixing elements were utilized), while the Computational Fluid Dynamic method was chosen for fluid flow modelling, using the Eulerian multiphase model. The main aim of this article is to predict the behaviour of granules being gravitationally transported in different mixer configuration and to choose the best configuration of the mixer taking into account the total particle path, the number of mixing elements and the quality of the obtained mixture. The results of the numerical simulations in the static mixers were compared to experimental results, the mixing quality is examined by RSD (relative standard deviation) criterion, and the effects on the mixer type and the number of mixing elements on mixing process were studied. The effects of the mixer type and the number of mixing elements on mixing process were studied using analysis of variance (ANOVA). Mathematical modelling is used for optimization of number of Ross and Komax segments in mixer in order to gain desirable mixing results. [Projekat Ministarstva nauke Republike Srbije, br. TR31055]http://www.doiserbia.nb.rs/img/doi/0367-598X/2016/0367-598X1500060P.pdfDEM/CFDpredictionstatic mixerkomaxrossparticle tracking |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Pezo Lato Pezo Milada Jovanović Aca Kosanić Nenad Petrović Aleksandar Lević Ljubinko |
spellingShingle |
Pezo Lato Pezo Milada Jovanović Aca Kosanić Nenad Petrović Aleksandar Lević Ljubinko Granular flow in static mixers by coupled DEM/CFD approach Hemijska Industrija DEM/CFD prediction static mixer komax ross particle tracking |
author_facet |
Pezo Lato Pezo Milada Jovanović Aca Kosanić Nenad Petrović Aleksandar Lević Ljubinko |
author_sort |
Pezo Lato |
title |
Granular flow in static mixers by coupled DEM/CFD approach |
title_short |
Granular flow in static mixers by coupled DEM/CFD approach |
title_full |
Granular flow in static mixers by coupled DEM/CFD approach |
title_fullStr |
Granular flow in static mixers by coupled DEM/CFD approach |
title_full_unstemmed |
Granular flow in static mixers by coupled DEM/CFD approach |
title_sort |
granular flow in static mixers by coupled dem/cfd approach |
publisher |
Association of Chemical Engineers of Serbia |
series |
Hemijska Industrija |
issn |
0367-598X 2217-7426 |
publishDate |
2016-01-01 |
description |
The mixing process greatly influence the mixing efficiency, as well as the
quality and the price of the intermediate and/or the final product. Static
mixer is used for premixing action before the main mixing process, for
significant reduction of mixing time and energy consumption. This type of
premixing action is not investigated in detail in the open literature. In
this article, the novel numerical approach called Discrete Element Method is
used for modelling of granular flow in multiple static mixer applications (1
- 3 Komax or Ross mixing elements were utilized), while the Computational
Fluid Dynamic method was chosen for fluid flow modelling, using the Eulerian
multiphase model. The main aim of this article is to predict the behaviour
of granules being gravitationally transported in different mixer
configuration and to choose the best configuration of the mixer taking into
account the total particle path, the number of mixing elements and the
quality of the obtained mixture. The results of the numerical simulations in
the static mixers were compared to experimental results, the mixing quality
is examined by RSD (relative standard deviation) criterion, and the effects
on the mixer type and the number of mixing elements on mixing process were
studied. The effects of the mixer type and the number of mixing elements on
mixing process were studied using analysis of variance (ANOVA). Mathematical
modelling is used for optimization of number of Ross and Komax segments in
mixer in order to gain desirable mixing results. [Projekat Ministarstva
nauke Republike Srbije, br. TR31055] |
topic |
DEM/CFD prediction static mixer komax ross particle tracking |
url |
http://www.doiserbia.nb.rs/img/doi/0367-598X/2016/0367-598X1500060P.pdf |
work_keys_str_mv |
AT pezolato granularflowinstaticmixersbycoupleddemcfdapproach AT pezomilada granularflowinstaticmixersbycoupleddemcfdapproach AT jovanovicaca granularflowinstaticmixersbycoupleddemcfdapproach AT kosanicnenad granularflowinstaticmixersbycoupleddemcfdapproach AT petrovicaleksandar granularflowinstaticmixersbycoupleddemcfdapproach AT levicljubinko granularflowinstaticmixersbycoupleddemcfdapproach |
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1725721319844085760 |