< Terug naar vorige pagina

Publicatie

Liquid bridge length scale based nondimensional groups for mapping transitions between regimes in capillary break-up experiments

Tijdschriftbijdrage - Tijdschriftartikel

Criteria to identify transitions between dynamic self-similar linear thinning regimes of liquid bridges are of utmost importance in order to accurately interpret results in capillary break-up rheometry. Currently available criteria encompass many experimental difficulties or rely on numerical approaches. Here, we introduce a different set of nondimensional 16 groups, Oh L = η in / √ γ ρL and a = R/L, based on the experimentally relevant axial length scale of a liquid bridge L, for viscous-dominated fluids undergoing capillary break-up in air. This framework is further extended to encompass the effect of outer viscous fluids. As a result, we present a two-dimensional operating map in which the boundaries are set by fluid properties and a single geometrical parameter, related to the experimental configuration. This approach establishes guidelines to correctly interpret experimental data and identify transitions in capillary break-up experiments of liquid bridges surrounded by fluids of different viscosities.
Tijdschrift: Physical Review Fluids
ISSN: 2469-990X
Issue: 5
Volume: 5
Jaar van publicatie:2020
Trefwoorden:Adhesives, Drop breakup, Instability of free-surface flows, Liquid bridges, Paints, Rheological properties, Rheology techniques
BOF-keylabel:ja
IOF-keylabel:ja
BOF-publication weight:1
CSS-citation score:1
Auteurs:International
Authors from:Government, Higher Education, Private
Toegankelijkheid:Closed