Consistent Surface Model for SPH-based Fluid Transport

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Date
2013
Journal Title
Journal ISSN
Volume Title
Publisher
ACM SIGGRAPH / Eurographics Association
Abstract
Surface effects play an essential role in fluid simulations. A vast number of dynamics including wetting of surfaces, cleansing, and foam dynamics are based on surface-surface and surface-bulk interactions, which in turn rely on a robust surface computation. In this paper we introduce a conservative Lagrangian formulation of surface effects based upon incompressible smoothed particle hydrodynamics (SPH). The key concept of our approach is to realize an implicit definition of the fluid's (free) surface by assigning each particle a value estimating its surface area. Based on this consistent surface representation, a conservative coupling of bulk and surface is achieved. We demonstrate the applicability and robustness of our approach for several types of surface-relevant effects including adsorption, diffusion and reaction kinetics.
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@inproceedings{
10.1145:2485895.2485902
, booktitle = {
Eurographics/ ACM SIGGRAPH Symposium on Computer Animation
}, editor = {
Theodore Kim and Robert Sumner
}, title = {{
Consistent Surface Model for SPH-based Fluid Transport
}}, author = {
Orthmann, Jens
and
Hochstetter, Hendrik
and
Bader, Julian
and
Bayraktar, Serkan
and
Kolb, Andreas
}, year = {
2013
}, publisher = {
ACM SIGGRAPH / Eurographics Association
}, ISSN = {
1727-5288
}, ISBN = {
978-1-4503-2132-7
}, DOI = {
10.1145/2485895.2485902
} }
Citation