We consider the interface advection problem by a prescribed velocity field in the special case when the interface intersects the domain boundary, i.e. in the presence of a contact line. This problem emerges from the discretization of continuum models for dynamic wetting. The kinematic evolution equation for the dynamic contact angle (Fricke et al., 2019) expresses the fundamental relationship between the rate of change of the contact angle and the structure of the transporting velocity field. The goal of the present work is to develop an interface advection method that is consistent with the fundamental kinematics and transports the contact angle correctly with respect to a prescribed velocity field. In order to verify the advection method, the kinematic evolution equation is solved numerically and analytically (for special cases). We employ the geometrical Volume-of-Fluid (VOF) method on a structured Cartesian grid to solve the hyperbolic transport equation for the interface in two spatial dimensions. We introduce generalizations of the Youngs and ELVIRA methods to reconstruct the interface close to the domain boundary. Both methods deliver first-order convergent results for the motion of the contact line. However, the Boundary Youngs method shows strong oscillations in the numerical contact angle that do not converge with mesh refinement. In contrast to that, the Boundary ELVIRA method provides linear convergence of the numerical contact angle transport. (C) 2020 Elsevier Inc. All rights reserved.
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Pontifical Catholic Univ Rio de Janeiro, Dept Mech Engn, PUC Rio, Rua Marques de Sao Vicente 225, BR-22451900 Rio De Janeiro, BrazilPontifical Catholic Univ Rio de Janeiro, Dept Mech Engn, PUC Rio, Rua Marques de Sao Vicente 225, BR-22451900 Rio De Janeiro, Brazil
Branco, Rodrigo L. F. Castello
Kassar, Bruno B. M.
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Pontifical Catholic Univ Rio de Janeiro, Inst Tecgraf, PUC Rio, Rua Marques Sao Vicente 225, BR-22451900 Rio De Janeiro, BrazilPontifical Catholic Univ Rio de Janeiro, Dept Mech Engn, PUC Rio, Rua Marques de Sao Vicente 225, BR-22451900 Rio De Janeiro, Brazil
Kassar, Bruno B. M.
Carneiro, Joao N. E.
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ISDB FlowTech, Av Rio Branco 89,Ctr Rio de Janeiro, BR-20040004 Rio De Janeiro, RJ, BrazilPontifical Catholic Univ Rio de Janeiro, Dept Mech Engn, PUC Rio, Rua Marques de Sao Vicente 225, BR-22451900 Rio De Janeiro, Brazil
Carneiro, Joao N. E.
Nieckele, Angela O.
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Pontifical Catholic Univ Rio de Janeiro, Dept Mech Engn, PUC Rio, Rua Marques de Sao Vicente 225, BR-22451900 Rio De Janeiro, BrazilPontifical Catholic Univ Rio de Janeiro, Dept Mech Engn, PUC Rio, Rua Marques de Sao Vicente 225, BR-22451900 Rio De Janeiro, Brazil
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Univ Politecn Catalunya BarcelonaTech, ETSEIAT, Heat & Mass Transfer Technol Ctr CTTC, Barcelona 08222, SpainUniv Politecn Catalunya BarcelonaTech, ETSEIAT, Heat & Mass Transfer Technol Ctr CTTC, Barcelona 08222, Spain
Jofre, Lluis
Lehmkuhl, Oriol
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Univ Politecn Catalunya BarcelonaTech, ETSEIAT, Heat & Mass Transfer Technol Ctr CTTC, Barcelona 08222, Spain
Termo Fluids SL, Barcelona 08222, SpainUniv Politecn Catalunya BarcelonaTech, ETSEIAT, Heat & Mass Transfer Technol Ctr CTTC, Barcelona 08222, Spain
Lehmkuhl, Oriol
Castro, Jesus
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Univ Politecn Catalunya BarcelonaTech, ETSEIAT, Heat & Mass Transfer Technol Ctr CTTC, Barcelona 08222, SpainUniv Politecn Catalunya BarcelonaTech, ETSEIAT, Heat & Mass Transfer Technol Ctr CTTC, Barcelona 08222, Spain
Castro, Jesus
Oliva, Assensi
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Univ Politecn Catalunya BarcelonaTech, ETSEIAT, Heat & Mass Transfer Technol Ctr CTTC, Barcelona 08222, SpainUniv Politecn Catalunya BarcelonaTech, ETSEIAT, Heat & Mass Transfer Technol Ctr CTTC, Barcelona 08222, Spain
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Univ Paris 06, CNRS, Inst Jean Le Rond dAlembert, UMR 7190, F-75005 Paris, FranceUniv Paris 06, CNRS, Inst Jean Le Rond dAlembert, UMR 7190, F-75005 Paris, France
Agbaglah, Gilou
Delaux, Sebastien
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Natl Inst Water & Atmospher Res, Wellington, New ZealandUniv Paris 06, CNRS, Inst Jean Le Rond dAlembert, UMR 7190, F-75005 Paris, France
Delaux, Sebastien
Fuster, Daniel
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Univ Paris 06, CNRS, Inst Jean Le Rond dAlembert, UMR 7190, F-75005 Paris, FranceUniv Paris 06, CNRS, Inst Jean Le Rond dAlembert, UMR 7190, F-75005 Paris, France
Fuster, Daniel
Hoepffner, Jerome
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Univ Paris 06, CNRS, Inst Jean Le Rond dAlembert, UMR 7190, F-75005 Paris, FranceUniv Paris 06, CNRS, Inst Jean Le Rond dAlembert, UMR 7190, F-75005 Paris, France
Hoepffner, Jerome
Josserand, Christophe
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Univ Paris 06, CNRS, Inst Jean Le Rond dAlembert, UMR 7190, F-75005 Paris, FranceUniv Paris 06, CNRS, Inst Jean Le Rond dAlembert, UMR 7190, F-75005 Paris, France
Josserand, Christophe
Popinet, Stephane
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Univ Paris 06, CNRS, Inst Jean Le Rond dAlembert, UMR 7190, F-75005 Paris, France
Natl Inst Water & Atmospher Res, Wellington, New ZealandUniv Paris 06, CNRS, Inst Jean Le Rond dAlembert, UMR 7190, F-75005 Paris, France
Popinet, Stephane
Ray, Pascal
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Univ Paris 06, CNRS, Inst Jean Le Rond dAlembert, UMR 7190, F-75005 Paris, FranceUniv Paris 06, CNRS, Inst Jean Le Rond dAlembert, UMR 7190, F-75005 Paris, France
Ray, Pascal
Scardovelli, Ruben
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Univ Bologna, DIENCA Lab Montecuccolino, I-40136 Bologna, ItalyUniv Paris 06, CNRS, Inst Jean Le Rond dAlembert, UMR 7190, F-75005 Paris, France
Scardovelli, Ruben
Zaleski, Stephane
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Univ Paris 06, CNRS, Inst Jean Le Rond dAlembert, UMR 7190, F-75005 Paris, FranceUniv Paris 06, CNRS, Inst Jean Le Rond dAlembert, UMR 7190, F-75005 Paris, France