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Shape of pendent droplets under a tilted surface

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Publication:2116313
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DOI10.1016/J.PHYSD.2020.132765zbMath1490.76052arXiv2001.11233OpenAlexW3003469875MaRDI QIDQ2116313

Alvin Sodji, Juan Carlos Fernández-Toledano, François Dunlop, Joël De Coninck, Thierry E. Huillet

Publication date: 16 March 2022

Published in: Physica D (Search for Journal in Brave)

Full work available at URL: https://arxiv.org/abs/2001.11233


zbMATH Keywords

perturbation methodcontact angleYoung-Laplace equationfinite element package Surface EvolverFurmidge relationsmall Bond number


Mathematics Subject Classification ID

Capillarity (surface tension) for incompressible inviscid fluids (76B45) Asymptotic methods, singular perturbations applied to problems in fluid mechanics (76M45) Finite element methods applied to problems in fluid mechanics (76M10)


Related Items (1)

A second-order-accurate approximation for the shape of a sessile droplet deformed by gravity


Uses Software

  • Surface Evolver



Cites Work

  • On the shape of a lightweight drop on a horizontal plane
  • The Physics of Microdroplets
  • On the ability of drops or bubbles to stick to non-horizontal surfaces of solids
  • On the shape of small sessile and pendant drops by singular perturbation techniques




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