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20152026
most citedAir Entrainment in Dynamic Wetting: Knudsen Effects and the Influence of Ambient Air Pressure

33 citations · 133 across the 16 of their papers we have counts for

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Showing 2021 · physics.flu-dynShow all

8 papers · 2 filters

physics.flu-dyn2021★ 9 cited

Stability and Bifurcation of Dynamic Contact Lines in Two Dimensions

J. S. Keeler, D. A. Lockerby, S. Kumar +1

The moving-contact line between a fluid, liquid and a solid is a ubiquitous phenomenon, and determining the maximum speed at which a liquid can wet/dewet a solid is a practically i…

physics.flu-dyn2021

Deformed liquid marble formation: Experiments and computational modeling

J. R. J. Pritchard, M. V. Chubynsky, J. O. Marston +1

The formation of deformed liquid marbles via impact of drops onto powder beds is analysed using experimental and computational modelling approaches. Experimentally, particular atte…

physics.flu-dyn2021★ 26 cited

Efficient simulation of non-classical liquid-vapour phase-transition flows: a method of fundamental solutions

Anirudh S Rana, Sonu Saini, Suman Chakraborty +2

Classical continuum-based liquid vapour phase-change models typically assume continuity of temperature at phase interfaces along with a relation which describes the rate of evapora…

physics.flu-dyn2021★ 14 cited

-theorem and boundary conditions for the linear R26 equations: application to flow past an evaporating droplet

Anirudh S. Rana, Vinay Kumar Gupta, James E. Sprittles +1

Determining physically admissible boundary conditions for higher moments in an extended continuum model is recognised as a major obstacle. Boundary conditions for the regularised 2…

physics.flu-dyn2021★ 1 cited

Stability of similarity solutions of viscous thread pinch-off

Michael C. Dallaston, Chengxi Zhao, James E. Sprittles +1

In this paper we compute the linear stability of similarity solutions of the breakup of viscous liquid threads, in which the viscosity and inertia of the liquid are in balance with…

physics.flu-dyn2021★ 24 cited

On the velocity distribution function of spontaneously evaporating atoms

Sergiu Busuioc, Livio Gibelli, Duncan A. Lockerby +1

Numerical solutions of the Enskog-Vlasov (EV) equation are used to determine the velocity distribution function of atoms spontaneously evaporating into near-vacuum conditions. It i…