4.7 Review

Capillary imbibition and flow of wetting liquid in irregular capillaries: A 100-year review

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Capillary-driven flow in corner geometries

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Summary: This review summarizes the progress in studying the wetting of corner-containing geometries, including isolated corners, rectangular channels, and confined angular geometries. It is believed to be of interest to readers from fields such as the oil and gas industry, space science, biophysics, and microfluidics.

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Summary: This study investigates the imbibition of water and silicone oil in poplar and spruce at both the anatomical and macroscopic levels. The findings suggest that the imbibition mechanisms depend on the properties of the liquid and the species of the tree. The observations are quantified and used to develop a simple imbibition model that accurately simulates the macroscopic kinetics of imbibition.

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A generalized analytical model for estimating the rate of imbibition/drainage of wetting/nonwetting fluids in capillaries

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Summary: Replacing one immiscible fluid with another is crucial for various applications. Research has mainly focused on specific scenarios, but a new generalized model has been introduced to consider all the physics involved and not ignore the displaced fluid. Validation showed good agreement with analytical solutions and computational fluid dynamics simulations.

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Spontaneous Imbibition in a Square Tube With Corner Films: Theoretical Model and Numerical Simulation

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Summary: With the modified interacting capillary bundle model, the dynamics of liquid imbibition in a square tube with corner films were accurately described, showing the universal scaling law for the main meniscus. This model is helpful in investigating the mechanisms during spontaneous imbibition and the impacts of various factors on imbibition dynamics.

WATER RESOURCES RESEARCH (2021)

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Dynamics of capillary flow in an undulated tube

Jiechao Lei et al.

Summary: The study presents a theoretical model for a circular undulated tube with an idealized cosine-type inner wall, revealing the impact of tube undulation on capillary flow. In tubes with large wave numbers, capillary height is generally lower compared to smooth tubes, while the opposite is true for small wave numbers.

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Multiscale Characterization of Wettability in Porous Media

Ryan T. Armstrong et al.

Summary: Wettability plays a crucial role in controlling multiphase flow in porous media, with recent advancements in imaging technology and modeling techniques greatly improving our understanding and characterization of wettability. Characterizing wettability in porous media requires considering fundamental perspectives such as geometry and energy. Advancing the overall description of wettability involves understanding operative mechanisms at different scales and developing quantitative approaches to capture these effects.

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Capillary imbibition in open-cell monodisperse foams

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Universality of capillary rising in corners

Jiajia Zhou et al.

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Design, Fabrication, and Analysis of a Capillary Diode for Potential Application in Water-Oil Separation

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Capillary imbibition of non-Newtonian fluids in a microfluidic channel: analysis and experiments

Srinivas R. Gorthi et al.

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Accounting for corner flow unifies the understanding of droplet formation in microfluidic channels

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Capillary imbibition in cement-based materials with time-dependent permeability

Christopher Hall

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Computations of spontaneous rise of a rivulet in a corner of a vertical square capillary

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Characterization of spontaneous imbibition dynamics in irregular channels by mesoscopic modeling

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Spontaneous rise in open rectangular channels under gravity

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Dynamics of liquid imbibition through paper with intra-fibre pores

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Capillary Imbibition of Polymer Mixtures in Nanopores

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Mechanism on Imbibition of Fracturing Fluid in Nanopore

Shun Liu et al.

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Pore geometry control of apparent wetting in porous media

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SCIENTIFIC REPORTS (2018)

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Design of capillary microfluidics for spinning cell-laden microfibers

Yunru Yu et al.

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Capillary imbibition in a square tube

Tian Yu et al.

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Effects of intermediate wettability on entry capillary pressure in angular pores

Harris Sajjad Rabbani et al.

JOURNAL OF COLLOID AND INTERFACE SCIENCE (2016)

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Capillary Displacement of Viscous Liquids in Geometries with Axial Variations

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Wettability controls slow immiscible displacement through local interfacial instabilities

Michael Jung et al.

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Predicting water permeability in sedimentary rocks from capillary imbibition and pore structure

D. Benavente et al.

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Dynamics of water imbibition through paper channels with wax boundaries

Seokbin Hong et al.

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Capillary imbibition of aqueous foams by miscible and nonmiscible liquids

Remy Mensire et al.

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Whole blood spontaneous capillary flow in narrow V-groove microchannels

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Characterization of capillary rise dynamics in parallel micro V-grooves

Daxiang Deng et al.

INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER (2014)

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Asymmetric capillary filling of non-Newtonian power law fluids

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MICROFLUIDICS AND NANOFLUIDICS (2014)

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Geometry-Induced Asymmetric Capillary Flow

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LANGMUIR (2014)

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Pore-scale imaging and modelling

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ADVANCES IN WATER RESOURCES (2013)

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Wetting considerations in capillary rise and imbibition in closed square tubes and open rectangular cross-section channels

F. Fouzia Ouali et al.

MICROFLUIDICS AND NANOFLUIDICS (2013)

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Real-time 3D imaging of Haines jumps in porous media flow

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NEWTONIAN FLOW IN CONVERGING-DIVERGING CAPILLARIES

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Interfacial jumps and pressure bursts during fluid displacement in interacting irregular capillaries

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Compound capillary rise

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On the dynamics of capillary imbibition

Jungchul Kim et al.

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Hydrodynamics of Capillary Imbibition under Nanoconfinement

Wylie Stroberg et al.

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Roles of gas in capillary filling of nanoslits

Fabien Chauvet et al.

SOFT MATTER (2012)

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Universal scaling of spontaneous imbibition for water-wet systems

K. S. Schmid et al.

WATER RESOURCES RESEARCH (2012)

Article Biochemical Research Methods

Capillary flow in sacrificially etched nanochannels

Mark N. Hamblin et al.

BIOMICROFLUIDICS (2011)

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Trapping of the non-wetting phase in an interacting triangular tube bundle model

Jinxun Wang et al.

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Capillary rise of superspreaders

Jovana Radulovic et al.

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A universal law for capillary rise in corners

Alexandre Ponomarenko et al.

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Imbibition in mesoporous silica: rheological concepts and experiments on water and a liquid crystal

Simon Gruener et al.

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A Discussion of the Effect of Tortuosity on the Capillary Imbibition in Porous Media

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Experimental study of spontaneous capillary imbibition in selected carbonate core samples

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Capillary flow in microchannels

Y. Zhu et al.

MICROFLUIDICS AND NANOFLUIDICS (2010)

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Spontaneous Imbibition in Nanopores of Different Roughness and Wettability

Mikhail R. Stukan et al.

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Experimental study on imbibition displacement mechanisms of two-phase fluid using micro model

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Effects of inertia and directionality on flow and transport in a rough asymmetric fracture

M. Bayani Cardenas et al.

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Capillary Imbibition of PbI2 Melt by Inorganic and Carbon Nanotubes

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Capillary filling of sub-10 nm nanochannels

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The transition from inertial to viscous flow in capillary rise

N. Fries et al.

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An analytic solution of capillary rise restrained by gravity

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Imbibition in geometries with axial variations

Mathilde Reyssat et al.

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Recovery performance of partially fractured reservoirs by capillary imbibition

Fuad H. Qasem et al.

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Capillary rise of a liquid between two vertical plates making a small angle

F. J. Higuera et al.

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Threshold pressure in arbitrary triangular tubes using RSG concept for all wetting conditions

Peng Jia et al.

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Double thermal oxidation scheme for the fabrication of SiO2 nanochannels

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Co-current and counter-current imbibition in independent tubes of non-axisymmetric geometry

E. Unsal et al.

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Micromachined Fabry-Perot interferometer with embedded nanochannels for nanoscale fluid dynamics

Koen M. van Delft et al.

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Flows in rectangular microchannels driven by capillary force and gravity

W. R. Jong et al.

INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER (2007)

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Effect of shape factor, characteristic length, and boundary conditions on spontaneous imbibition

Hasan O. Yildiz et al.

JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING (2006)

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Generalized scaling approach for spontaneous imbibition: An analytical model

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Filling kinetics of liquids in nanochannels as narrow as 27 nm by capillary force

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Dynamics of imbibition into a pore with a heterogeneous surface

G Martic et al.

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Late stage kinetics for various wicking and spreading problems

PB Warren

PHYSICAL REVIEW E (2004)

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The possibility of different time scales in the dynamics of pore imbibition

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The influence of pore wettability on the dynamics of imbibition and drainage

TD Blake et al.

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Interface motion of capillary-driven flow in rectangular microchannel

N Ichikawa et al.

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Surfactant solutions and porous substrates: spreading and imbibition

VM Starov

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Capillary filling speed of water in nanochannels

NR Tas et al.

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A highly parallel picoliter dispenser with an integrated, novel capillary channel structure

CP Steinert et al.

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Capillary imbibition of surfactant solutions in porous media and thin capillaries: partial wetting case

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Stability of a fluid-fluid interface in a biconical pore segment

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Capillary driven flow in circular cylindrical tubes

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Predicting the capillary imbibition of porous rocks from microstructure

D Benavente et al.

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Effect of capillary element aspect ratio on the dynamic imbibition within porous networks

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Numerical simulations of capillary-driven flows in nonuniform cross-sectional capillaries

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Recovery of oil by spontaneous imbibition

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Monolithic microfabricated valves and pumps by multilayer soft lithography

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Capillary flow in a noncircular tube

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Pore scale modeling of rate effects in imbibition

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