The extended Discontinuous Galerkin method adapted for moving contact line problems via the generalized Navier boundary condition: Data

dc.contributor.author Smuda, Martin
dc.contributor.author Kummer, Florian
dc.date.accessioned 2020-10-16T16:21:01Z
dc.date.available 2020-10-16T16:21:01Z
dc.date.created 2020-10-16
dc.date.issued 2020-10-16
dc.description In this work an extended Discontinuous Galerkin (extended DG/XDG also called unfitted DG) solver for flow problems exhibiting moving contact lines is presented. The generalized Navier boundary condition is employed within the XDG discretization for the handling of the moving contact lines. The spatial discretization is based on a symmetric interior penalty method and the numerical treatment of the surface tension force is done via the Laplace-Beltrami formulation. The XDG method adapts the approximation space conformal to the position of the interface and allows a sub-cell accurate representation within the sharp interface formulation. The interface is described as the zero set of a signed-distance level-set function and discretized by a standard DG method. No adaption of the level-set evolution algorithm is needed for the extension to moving contact line problems. The developed solver is validated against typical contact line driven flow phenomena including droplet simulations on a wall and the two-phase Couette flow. en_US
dc.identifier.uri https://tudatalib.ulb.tu-darmstadt.de/handle/tudatalib/2498
dc.identifier.uri https://doi.org/10.25534/tudatalib-330
dc.rights.licenseCC-BY-NC-4.0 (https://creativecommons.org/licenses/by-nc/4.0)
dc.subject.classification 4.22-03
dc.subject.ddc 620
dc.title The extended Discontinuous Galerkin method adapted for moving contact line problems via the generalized Navier boundary condition: Data en_US
dc.type Dataset en_US
dcterms.accessRights openAccess
person.identifier.orcid #PLACEHOLDER_PARENT_METADATA_VALUE#
person.identifier.orcid #PLACEHOLDER_PARENT_METADATA_VALUE#
tuda.history.classification Version=2020-2024;404-03 Strömungsmechanik
tuda.project DFG | SFB1194 | TP B06 Oberlack

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