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Contact line dissipation in short-time dynamic wetting
2012 (English)In: Europhysics letters, ISSN 0295-5075, E-ISSN 1286-4854, Vol. 97, no 4, 44004Article in journal (Refereed) PublishedText
Abstract [en]

Dynamic wetting of a solid surface is a process that is ubiquitous in Nature, and also of increasing technological importance. The underlying dissipative mechanisms are, however, still unclear. We present here short-time dynamic wetting experiments and numerical simulations, based on a phase field approach, of a droplet on a dry solid surface, where direct comparison of the two allows us to evaluate the different contributions from the numerics. We find that an important part of the dissipation may arise from a friction related to the motion of the contact line itself, and that this may be dominating both inertia and viscous friction in the flow adjacent to the contact line. A contact line friction factor appears in the theoretical formulation that can be distinguished and quantified, also in room temperature where other sources of dissipation are present. Water and glycerin-water mixtures on various surfaces have been investigated where we show the dependency of the friction factor on the nature of the surface, and the viscosity of the liquid.

Place, publisher, year, edition, pages
2012. Vol. 97, no 4, 44004
National Category
Mechanical Engineering
URN: urn:nbn:se:sh:diva-30106DOI: 10.1209/0295-5075/97/44004ISI: 000300844100016ScopusID: 2-s2.0-84857572550OAI: diva2:932505
Swedish e‐Science Research Center
Available from: 2012-03-13 Created: 2016-06-01 Last updated: 2016-06-01Bibliographically approved

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Amberg, Gustav
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