Imbibition of Oil in Dry and Prewetted Calcite Nanopores

Fuente: arXiv
Gespeichert in:
Bibliographische Detailangaben
Hauptverfasser: Ahmed, Ejaz, Zhang, Huajie, Aybar, Mert, Jin, Bikai, Wang, Shihao, Qiao, Rui
Format: Preprint
Veröffentlicht: 2025
Schlagworte:
Online-Zugang:
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
_version_ 1866915477990670336
author Ahmed, Ejaz
Zhang, Huajie
Aybar, Mert
Jin, Bikai
Wang, Shihao
Qiao, Rui
author_facet Ahmed, Ejaz
Zhang, Huajie
Aybar, Mert
Jin, Bikai
Wang, Shihao
Qiao, Rui
contents Fluid imbibition into porous media featuring nanopores is ubiquitous in applications such as oil recovery from unconventional reservoirs and material processing. While the imbibition of pure fluids has been extensively studied, the imbibition of fluid mixture is little explored. Here we report the molecular dynamics study of the imbibition of model crude oil into nanometer-wide mineral pores, both when pore walls are dry and prewetted by a residual water film. Results show the fastest imbibition and quickest propagation of molecularly thin precursor films ahead of the oil meniscus in the dry pore system. The presence of a thin water film on pore walls corresponding to an environmental relative humidity of 30% slows down but still allows the spontaneous imbibition of single-component oil. Introducing polar components into the oil slows down the imbibition into dry nanopores, due partly to the clogging of the pore entrance. Strong selectivity toward nonpolar oil is evident. The slowdown of imbibition by polar oil is less significant in the prewetted pores than in dry pores, but the selectivity toward nonpolar oil remains strong.
format Preprint
id arxiv_https___arxiv_org_abs_2504_08790
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Imbibition of Oil in Dry and Prewetted Calcite Nanopores
Ahmed, Ejaz
Zhang, Huajie
Aybar, Mert
Jin, Bikai
Wang, Shihao
Qiao, Rui
Soft Condensed Matter
Atomic Physics
Fluid Dynamics
Fluid imbibition into porous media featuring nanopores is ubiquitous in applications such as oil recovery from unconventional reservoirs and material processing. While the imbibition of pure fluids has been extensively studied, the imbibition of fluid mixture is little explored. Here we report the molecular dynamics study of the imbibition of model crude oil into nanometer-wide mineral pores, both when pore walls are dry and prewetted by a residual water film. Results show the fastest imbibition and quickest propagation of molecularly thin precursor films ahead of the oil meniscus in the dry pore system. The presence of a thin water film on pore walls corresponding to an environmental relative humidity of 30% slows down but still allows the spontaneous imbibition of single-component oil. Introducing polar components into the oil slows down the imbibition into dry nanopores, due partly to the clogging of the pore entrance. Strong selectivity toward nonpolar oil is evident. The slowdown of imbibition by polar oil is less significant in the prewetted pores than in dry pores, but the selectivity toward nonpolar oil remains strong.
title Imbibition of Oil in Dry and Prewetted Calcite Nanopores
topic Soft Condensed Matter
Atomic Physics
Fluid Dynamics
url https://arxiv.org/abs/2504.08790