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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…

软凝聚态物质 · 物理学 2018-11-28 Tian Yu , Jiajia Zhou , Masao Doi

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…

软凝聚态物质 · 物理学 2010-05-06 Simon Gruener , Patrick Huber

The dynamics of liquid condensation on a substrate or within a capillary is studied when the wetting film grows via interface-limited growth. We use a phenomenological time-dependent Ginzburg-Landau (TDGL)-type model with long-range…

软凝聚态物质 · 物理学 2007-08-24 Masao Iwamatsu

Capillary invasion of a liquid into an empty tube, which is called capillary rise when the tube axis is in the vertical direction, is one of the fundamental phenomena representing capillary effects. Usually, the tube is actually filled with…

流体动力学 · 物理学 2019-10-08 Julie André , Ko Okumura

We have simulated the temporal evolution of pressure due to capillary and viscous forces in two-phase drainage in porous media. We analyze our result in light of macroscopic flow equations for two-phase flow. We also investigate the effect…

流体动力学 · 物理学 2009-10-31 Eyvind Aker , Knut Jorgen Maloy , Alex Hansen

We present a parametric study of the unsteady phenomena associated with the flow of elongated gas bubbles travelling through liquid-filled square capillaries under high Weber number conditions. These conditions consistently induce the…

流体动力学 · 物理学 2022-12-26 Paula Pico , Lyes Kahouadji , Seungwon Shin , Jalel Chergui , Damir Juric , Omar K. Matar

We study immiscible two-phase flow of a compressible and an incompressible fluid inside a capillary tube of varying radius under steady-state conditions. The incompressible fluid is Newtonian and the compressible fluid is an inviscid ideal…

流体动力学 · 物理学 2022-07-22 Hyejeong L. Cheon , Hursanay Fyhn , Alex Hansen , Øivind Wilhelmsen , Santanu Sinha

The displacement of a suspension of particles by an immiscible fluid in a capillary tube or in a porous media is a canonical configuration that finds application in a large number of natural and industrial applications, including water…

软凝聚态物质 · 物理学 2022-09-30 Deok-Hoon Jeong , Langqi Xing , Jean-Baptiste Boutin , Alban Sauret

A rigid object moving in a viscous fluid and in close proximity with an elastic wall experiences self-generated elastohydrodynamic interactions. This has been the subject of an intense research activity, with a recent and growing attention…

软凝聚态物质 · 物理学 2023-07-04 Aditya Jha , Yacine Amarouchene , Thomas Salez

Thermodynamics of imbibition (intrusion and extrusion) in capillaries of double conical structures is theoretically studied using the classical capillary model. By extending the knowledge of the thermodynamics of a single conical capillary,…

软凝聚态物质 · 物理学 2023-09-19 Masao Iwamatsu

Liquid bridges are commonly encountered in nature and the liquid transfer induced by their rupture are widely used in various industrial applications. In this work, with the focus on the porous tip, we studied the impacts of capillary…

流体动力学 · 物理学 2020-08-25 Si Suo , Yixiang Gan

We investigate a two-dimensional network simulator capable of modeling different time dependencies in two-phase drainage displacements. In particular, we focus on the temporal evolution of the pressure due to capillary and viscous forces…

流体动力学 · 物理学 2008-02-03 Eyvind Aker , Knut Jorgen Maloy , Alex Hansen , G. George Batrouni

Based on the capillary pore model (space-charge theory) for combined fluid and ion flow through cylindrical nanopores or nanotubes, we derive the continuum equations modified to include wall slip. We focus on the ionic conductance and…

化学物理 · 物理学 2016-03-31 J. Catalano , R. G. H. Lammertink , P. M. Biesheuvel

We report the results of a study of multiphase flow in porous media. A Darcy's law for steady multiphase flow was investigated for both binary and ternary amphiphilic flow. Linear flux-forcing relationships satisfying Onsager reciprocity…

软凝聚态物质 · 物理学 2009-11-07 Peter J. Love , Jean-Bernard Maillet , Peter V. Coveney

Thermodynamics and hydrodynamics of spontaneous and forced imbibition of liquid into conical capillaries are studied to assess the feasibility of a conical liquid diode. The analytical formulas for the Laplace pressure and the critical…

软凝聚态物质 · 物理学 2024-06-19 Masao Iwamatsu

We present a systematic study of capillary filling for a binary fluid by using a mesoscopic lattice Boltzmann model for immiscible fluids describing a diffusive interface moving at a given contact angle with respect to the walls. The…

流体动力学 · 物理学 2009-11-13 S. Chibbaro

This study presents a first-principles model to predict the two-phase pressure drop in gas-liquid intermittent flow through round capillaries, which serve as the simplest analogous of a porous medium. Building upon the classical capillary…

流体动力学 · 物理学 2025-10-15 Paolo Botticini , Davide Picchi , Santanu Sinha , Alex Hansen

The capillary-induced structural instability of an elastic circular tube partially filled by a liquid is studied by combining theoretical analysis and molecular dynamics simulations. The analysis shows that, associated with the instability,…

软凝聚态物质 · 物理学 2013-05-29 Y. Yang , Y. F. Gao , D. Y. Sun , M. Asta , J. J. Hoyt

The withdrawal of a liquid or the translation of a liquid slug in a capillary tube leads to the deposition of a thin film on the inner wall. When particles or contaminants are present in the liquid, they deposit and contaminate the tube if…

软凝聚态物质 · 物理学 2020-11-25 Deok-Hoon Jeong , Anezka Kvasnickova , Jean-Baptiste Boutin , David Cebron , Alban Sauret

Capillary dynamics has been and is yet an important field of research, because of its very relevant role played as the core mechanism at the base of many applications. In this context, we are particularly interested in the liquid…

流体动力学 · 物理学 2015-03-03 Riccardo Fazio , Salvatore Iacono