LAPSE:2023.32365
Published Article
LAPSE:2023.32365
Particle-Resolved Computational Fluid Dynamics as the Basis for Thermal Process Intensification of Fixed-Bed Reactors on Multiple Scales
April 20, 2023
Process intensification of catalytic fixed-bed reactors is of vital interest and can be conducted on different length scales, ranging from the molecular scale to the pellet scale to the plant scale. Particle-resolved computational fluid dynamics (CFD) is used to characterize different reactor designs regarding optimized heat transport characteristics on the pellet scale. Packings of cylinders, Raschig rings, four-hole cylinders, and spheres were investigated regarding their impact on bed morphology, fluid dynamics, and heat transport, whereby for the latter particle shape, the influence of macroscopic wall structures on the radial heat transport was also studied. Key performance indicators such as the global heat transfer coefficient and the specific pressure drop were evaluated to compare the thermal performance of the different designs. For plant-scale intensification, effective transport parameters that are needed for simplified pseudo-homogeneous two-dimensional plug flow models were determined from the CFD results, and the accuracy of the simplified modeling approach was judged.
Keywords
complex particle shapes, fixed-bed reactor, heat transfer, Process Intensification, wall structures
Suggested Citation
Jurtz N, Srivastava U, Moghaddam AA, Kraume M. Particle-Resolved Computational Fluid Dynamics as the Basis for Thermal Process Intensification of Fixed-Bed Reactors on Multiple Scales. (2023). LAPSE:2023.32365
Author Affiliations
Jurtz N: Chemical & Process Engineering, Technische Universität Berlin, Ackerstr. 76, 13355 Berlin, Germany [ORCID]
Srivastava U: Clariant Corporation, BU Catalysts, 1600 West Hill Street, Louisville, KY 40210, USA
Moghaddam AA: Clariant Produkte (Deutschland) GmbH, Arabellastr. 4a, 81925 Munich, Germany [ORCID]
Kraume M: Chemical & Process Engineering, Technische Universität Berlin, Ackerstr. 76, 13355 Berlin, Germany [ORCID]
Journal Name
Energies
Volume
14
Issue
10
First Page
2913
Year
2021
Publication Date
2021-05-18
Published Version
ISSN
1996-1073
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Original Submission
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PII: en14102913, Publication Type: Journal Article
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LAPSE:2023.32365
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doi:10.3390/en14102913
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Apr 20, 2023
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