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The early stages of drop impact onto a solid surface are considered. Detailed numerical simulations and detailed asymptotic analysis of the process reveal a self-similar structure both for the velocity field and the pressure field. The…

流体动力学 · 物理学 2016-05-04 Julien Philippi , Pierre-Yves Lagrée , Arnaud Antkowiak

Turbulent mixing and entrainment at the boundary of a cloud is studied by means of direct numerical simulations that couple the Eulerian description of the turbulent velocity and water vapor fields with a Lagrangian ensemble of cloud water…

流体动力学 · 物理学 2013-10-14 Bipin Kumar , Joerg Schumacher , Raymond A. Shaw

We report an experimental study of liquid drops moving against gravity, when placed on a vertically vibrating inclined plate, which is partially wetted by the drop. The frequency of vibrations ranges from 30 to 200 Hz, and, above a…

流体动力学 · 物理学 2008-09-12 P. Brunet , J. Eggers , R. D. Deegan

A simple - yet plausible - model for B-type vortex breakdown flows is postulated; one that is based on the immersion of a pair of slender coaxial vortex rings in a swirling flow of an ideal fluid rotating around the axis of symmetry of the…

动力系统 · 数学 2009-11-13 Denis Blackmore , Morten Brons , Arnaud Goullet

Charged water drops are more widespread than commonly acknowledged. For example, raindrops typically carry charges of order Q ~ 1 pC, while routine pipetting in the laboratory produces drops with Q ~ 50 pC. Here, we show that such modest…

流体动力学 · 物理学 2025-10-14 Marcus Lin , Peng Zhang , Aaron D. Ratschow , Oscar Li , Sankara Arunachalam , Dan Daniel

Liquid drop impact and penetration into a granular layer are investigated with diverse liquids and granular materials. We use various size of SiC abrasives and glass beads as a target granular material. We also employ ethanol and glycerol…

软凝聚态物质 · 物理学 2015-05-27 Hiroaki Katsuragi

Spilling tea or coffee leads to a tell-tale circular stain after the droplet dries, known as the "coffee ring effect". The evaporation of suspension droplets is a complex physical process, and predicting and controlling the particle deposit…

When a droplet gently lands on an atomically smooth substrate, it will most likely contact the underlying surface in about 0.1 s. However, theoretical estimation from fluid mechanics predicts a contact time of 10 to 100 s. What causes this…

流体动力学 · 物理学 2017-06-13 Hau Yung Lo , Yuan Liu , Lei Xu

We investigate numerically quasi-steady internal flows in an axially symmetrical evaporating sessile droplet depending on the ratio of substrate to fluid thermal conductivities, fluid volatility, contact angle and droplet size. Temperature…

流体动力学 · 物理学 2021-02-04 M. N. Turchaninova , E. S. Melnikova , A. A. Gavrilina , L. Yu. Barash

We examine the process of particle capture by large deformable drops in turbulent channel flow. We simulate the solid-liquid-liquid three-phase flow with an Eulerian-Lagrangian method based on Direct Numerical Simulation of turbulence…

流体动力学 · 物理学 2020-11-05 Arash Hajisharifi , Cristian Marchioli , Alfredo Soldati

When a drop of a volatile liquid is deposited on a uniformly heated wettable, thermally conducting substrate, one expects to see it spread into a thin film and evaporate. Contrary to this intuition, due to thermal Marangoni contraction the…

流体动力学 · 物理学 2023-06-21 Pallav Kant , Mathieu Souzy , Nayoung Kim , Devaraj van der Meer , Detlef Lohse

Several dynamical stages of the Marangoni convection of an evaporating sessile drop are obtained. We jointly take into account the hydrodynamics of an evaporating sessile drop, effects of the thermal conduction in the drop and the diffusion…

流体动力学 · 物理学 2010-08-25 L. Yu. Barash , L. N. Shchur

This fluid dynamics video was submitted to the Gallery of Fluid Motion for the 2009 APS Division of Fluid Dynamics Meeting in Minneapolis, Minnesota. Drop evaporation is a simple phenomena but still unclear concerning the mechanisms of…

流体动力学 · 物理学 2009-10-26 D. Brutin , F. Rigollet , C. LeNiliot

We numerically investigate bouncing and non-bouncing of droplets during isothermal impact on superhydrophobic surfaces. An in-house, experimentally-validated, finite-element method based computational model is employed to simulate the…

流体动力学 · 物理学 2016-01-06 Prathamesh G. Bange , Rajneesh Bhardwaj

A liquid drop spreading over a thin heterogeneous precursor film (such as an inhaled droplet on the mucus-lined wall of a lung airway) will experience perturbations in shape and location as its advancing contact line encounters regions of…

流体动力学 · 物理学 2018-07-27 Feng Xu , Sam Coveney , Oliver E. Jensen

The rich structures arising from the impingement dynamics of water drops onto solid substrates at high velocities are investigated numerically. Current methodologies in the aircraft industry estimating water collection on aircraft surfaces…

流体动力学 · 物理学 2018-04-04 Radu Cimpeanu , Demetrios T. Papageorgiou

Liquid drops that are pinned to solid surfaces by contact-angle hysteresis can be dislodged by wind forcing. When this occurs at high Reynolds numbers, substantial drop-interface oscillations precede depinning. It has been hypothesized that…

流体动力学 · 物理学 2021-05-11 Roger L. Simon, , Edward B. White

Ternary interactions between hetero-fluid particles, particularly the dynamics of droplets spreading over curved fluid interfaces remain insufficiently understood compared to the two-phase coalescence. In this study, we combine lattice…

流体动力学 · 物理学 2026-01-01 Adel Ebadi , Raha Kalantarpour , Fariborz Ataei , Hesam Ami Ahmadi , S. M. Hosseinalipour

This paper is dedicated to the solidification of a water drop impacting a cold solid surface. In a first part, we establish a 1D solidification model, derived from the Stefan problem, that aims at predicting the freezing dynamic of a liquid…

流体动力学 · 物理学 2019-07-24 Virgile Thiévenaz , Thomas Séon , Christophe Josserand

A negative bubble, coined antibubble, is composed by a thin air shell that is immersed in a soapy mixture. A large vortex is generated in the liquid using a mixer. An antibubble is then created close to the surface. The antibubble is fastly…

流体动力学 · 物理学 2009-10-16 D. Terwagne , G. Delon , N. Vandewalle , H. Caps , S. Dorbolo