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Related papers: Capillary Rise of Liquids in Nanopores

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We report on the capillary rise of water in three-dimensional networks of hydrophilic silica pores with 3.5nm and 5nm mean radii, respectively (porous Vycor monoliths). We find classical square root of time Lucas-Washburn laws for the…

Fluid Dynamics · Physics 2016-09-08 Simon Gruener , Tommy Hofmann , Dirk Wallacher , Andriy V. Kityk , Patrick Huber

Liquid flow propelled by capillary forces is one of the most important transport mechanisms in porous environments. It is governed by a fascinating interplay of interfacial, viscous drag as well as gravitational forces which liquids…

Soft Condensed Matter · Physics 2010-05-06 Simon Gruener , Patrick Huber

We present gravimetrical, optical, and neutron imaging measurements of the capillarity-driven infiltration of mesoporous silica glass by hydrocarbons. Square-root-of-time Lucas-Washburn invasion kinetics are found for linear alkanes from…

We study the spatio-temporal dynamics of water uptake by capillary condensation from unsaturated vapor in mesoporous silicon layers (pore radius $r_\mathrm{p} \simeq 2$ nm), taking advantage of the local changes in optical reflectance as a…

Soft Condensed Matter · Physics 2016-12-21 Olivier Vincent , Bastien Marguet , Abraham Stroock

We present gravimetrical and optical imaging experiments on the capillarity-driven imbibition of silicone oils in monolithic silica glasses traversed by 3D networks of pores (mesoporous Vycor glass with 6.5 nm or 10 nm pore diameters). As…

Soft Condensed Matter · Physics 2019-11-25 Simon Gruener , Patrick Huber

We report and rationalize the observation of a crossover from the classical Lucas-Washburn dynamics to a long-lived anomalously slow regime for capillary rise in simple glass tubes. We propose an analytical model considering the role of…

Soft Condensed Matter · Physics 2024-01-09 Menghua Zhao , Aktaruzzaman Al Hossain , Carlos E. Colosqui , Matthieu Roché

When a capillary is inserted into a liquid, the liquid will rapidly flow into it. This phenomenon, well studied and understood on the macroscale, is investigated by Molecular Dynamics simulations for coarse-grained models of nanotubes. Both…

Fluid Dynamics · Physics 2009-11-13 D. I. Dimitrov , A. Milchev , K. Binder

Wetting of surfaces with porous coating is relevant for a wide variety of technical applications, such as printing technologies and heat transfer enhancement. Imbibition and evaporation of liquids on surfaces covered with porous layers are…

Fluid Dynamics · Physics 2020-09-22 Noemi Ghillani , Michael Heinz , Tatiana Gambaryan-Roisman

We present, along with some fundamental concepts regarding imbibition of liquids in porous hosts, an experimental, gravimetric study on the capillarity-driven invasion dynamics of water and of the rod-like liquid crystal…

Soft Condensed Matter · Physics 2011-05-13 Simon Gruener , Patrick Huber

Capillary filling dynamics of liquid n-tetracosane (n-C24H50) in a network of cylindrical pores with 7 and 10 nm mean diameter in monolithic silica glass (Vycor) exhibit an abrupt temperature-slope change at Ts=54 deg C, ~4 deg C above bulk…

Fluid Dynamics · Physics 2009-10-24 Simon Gruener , Patrick Huber

Recently anomalous scaling properties of front broadening during spontaneous imbibition of water in Vycor glass, a nano-porous medium, were reported: the mean height and the width of the propagating front increase with time $t$ both…

Statistical Mechanics · Physics 2015-06-19 Deok-Sun Lee , Zeinab Sadjadi , Heiko Rieger

During spontaneous imbibition a wetting liquid is drawn into a porous medium by capillary forces. In systems with comparable pore length and diameter, such as paper and sand, the front of the propagating liquid forms a continuous interface.…

Soft Condensed Matter · Physics 2015-06-05 Simon Gruener , Zeinab Sadjadi , Helen E. Hermes , Andrij V. Kityk , Klaus Knorr , Heiko Rieger , Patrick Huber

Carbonates are highly heterogeneous formations with large variations in pore size distribution and pore space topology, which results in complex multiphase flow behavior. Here we investigate the spontaneous imbibition behavior of fluids in…

Fluid Dynamics · Physics 2020-06-30 Hasan J. Khan , Ayaz Mehmani , Maša Prodanović , David DiCarlo , Dayeed J. Khan

This article discusses the way the standard description of capillary filling dynamics has to be modified to account for liquid/solid slip in nanometric pores. It focuses in particular on the case of a large slip length compared to the pore…

Soft Condensed Matter · Physics 2011-12-07 Laurent Joly

When a square tube is brought in contact with bulk liquid, the liquid wets the corners of the tube, and creates finger-like wetted region. The wetting of the liquid then takes place with the growth of two parts, the bulk part where the…

Soft Condensed Matter · Physics 2018-11-28 Tian Yu , Jiajia Zhou , Masao Doi

We study the capacity of active matter to rise in thin tubes against gravity and other related phenomena, like, wetting of vertical plates and spontaneous imbibition, where a wetting liquid is drawn into a porous medium. This capillary…

Soft Condensed Matter · Physics 2020-02-05 Adam Wysocki , Heiko Rieger

We present direct experimental evidence that water droplets can spontaneously penetrate non-wetting capillaries, driven by the action of Laplace pressure due to high droplet curvature. Using high-speed optical imaging, microcapillaries of…

Fluid Dynamics · Physics 2010-02-04 Geoff R. Willmott , Chiara Neto , Shaun C. Hendy

Capillarity-driven transport in nanoporous solids is widespread in nature and crucial for modern liquid-infused engineering materials. During imbibition, curved menisci driven by high negative Laplace pressures exert an enormous contractile…

Liquids in nanoscale hydrophilic pores generate capillary pressures so large that they could theoretically climb kilometers against gravity. However, droplets on thin nanoporous layers form imbibition fronts stopping at millimeters or less…

Soft Condensed Matter · Physics 2026-01-16 Joachim Trosseille , Hugo Bellezza , Olivier Vincent

Capillary rise occurs when a thin tube contacts a liquid, which rises against gravity due to the capillary force. This phenomenon is present in a wide range of everyday and industrial settings and provides the means to measure the physical…

Soft Condensed Matter · Physics 2026-04-20 Anagha Datar , Joonas Ryssy , Aku O. Toivonen , Matilda Backholm
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