In this work, we investigate particle deposition efficiency in porous media by way of pore-scale computational fluid dynamics simulations. First, we show how to employ a novel methodology of algorithmic generation of porous media to build the computational domain for our simulations, representing a realistic random packing of monodisperse spheres. Then, we focus on the effect of gravitational settling on particle deposition, comparing our results with the well-known simplified theoretical laws, showing how pore-scale numerical experiments can improve the prediction accuracy of these laws but, most of all, help gain fundamental insights in the physical mechanisms at work.

Pore-scale simulations of particle transport for groundwater remediation: the effect of gravitational settling / Crevacore, Eleonora; Boccardo, Gianluca; Grillo, Alfio; Marchisio, Daniele; Sethi, Rajandrea. - In: CHEMICAL ENGINEERING TRANSACTIONS. - ISSN 2283-9216. - STAMPA. - 60:(2017), pp. 193-198. [10.3303/CET1760033]

Pore-scale simulations of particle transport for groundwater remediation: the effect of gravitational settling

CREVACORE, ELEONORA;BOCCARDO, GIANLUCA;GRILLO, ALFIO;MARCHISIO, DANIELE;SETHI, RAJANDREA
2017

Abstract

In this work, we investigate particle deposition efficiency in porous media by way of pore-scale computational fluid dynamics simulations. First, we show how to employ a novel methodology of algorithmic generation of porous media to build the computational domain for our simulations, representing a realistic random packing of monodisperse spheres. Then, we focus on the effect of gravitational settling on particle deposition, comparing our results with the well-known simplified theoretical laws, showing how pore-scale numerical experiments can improve the prediction accuracy of these laws but, most of all, help gain fundamental insights in the physical mechanisms at work.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2683511
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