Mixing in compact porous reactors
Other conference contribution, 2024

Porous reactors, such as fixed-beds, are often used to geometrically support a large reactive interface for the conversion of molecules continuously injected in a spatially compact device, where the ratio between transverse and longitudinal system sizes is minimized. We show, via pore-scale numerical simulations, that, in such compact systems, solute mixing is dominated by stretching-mediated random overlapping of concentration elements, occurring transversally to the direction of the main flow velocity U. Compared to a full three-dimensional random overlapping scenario, mixing dynamics is slower, characterized by a temporal decay of concentration variance σ2 ∼ (U/d t)-1/2, with d the catalyst particle size. Our analysis indicates that such a mixing mechanism regulates the homogenization of reaction at the reactive fluid-solid interface. We discuss the implications for packed bed column experiments and heat releaser devices.

fuel cells

Author

Dario Jonsson Maggiolo

Chalmers, Mechanics and Maritime Sciences (M2), Fluid Dynamics

Bulletin of the American Physical Society

ISSN 0003-0503 (ISSN)

APS Division of fluid dynamics
Salt Lake City, ,

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European Commission (EC) (EC/H2020/951801), 2020-09-01 -- 2024-02-29.

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Subject Categories

Fluid Mechanics and Acoustics

DOI

10.1002/9783527830572.ch14

More information

Latest update

12/16/2024