Spontaneous Imbibition and Drainage of Water in a Thin Porous Layer: Experiments and Modeling

Publication date

2021-09

Authors

Zhuang, L.ISNI 0000000460155872
Hassanizadeh, S. MajidISNI 0000000032572389
Bhatt, Divesh
van Duijn, C. J.ISNI 0000000397424565

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

taverne

Abstract

The typical characteristic of a thin porous layer is that its thickness is much smaller than its in-plane dimensions. This often leads to physical behaviors that are different from three-dimensional porous media. The classical Richards equation is insufficient to simulate many flow conditions in thin porous media. Here, we have provided an alternative approach by accounting for the dynamic capillarity effect. In this study, we have presented a set of one-dimensional in-plane imbibition and subsequent drainage experiments in a thin fibrous layer. The X-ray transmission method was used to measure saturation distributions along the fibrous sample. We simulated the experimental results using Richards equation either with classical capillary equation or with a so-called dynamic capillarity term. We have found that the standard Richards equation was not able to simulate the experimental results, and the dynamic capillarity effect should be taken into account in order to model the spontaneous imbibition. The experimental data presented here may also be used by other researchers to validate their models.

Keywords

Dynamic capillarity, In plane, Thin porous layer, Thin porous media, Unsaturated flow, Taverne, Catalysis, General Chemical Engineering

Citation

Zhuang, L, Hassanizadeh, S M, Bhatt, D & van Duijn, C J 2021, 'Spontaneous Imbibition and Drainage of Water in a Thin Porous Layer : Experiments and Modeling', Transport in Porous Media, vol. 139, no. 2, pp. 381-396. https://doi.org/10.1007/s11242-021-01670-7