DocumentCode :
1307187
Title :
A Deformable Surface Model for Real-Time Water Drop Animation
Author :
Yizhong Zhang ; Huamin Wang ; Shuai Wang ; Yiying Tong ; Kun Zhou
Author_Institution :
State Key Lab. of CAD&CG, Zhejiang Univ., Hangzhou, China
Volume :
18
Issue :
8
fYear :
2012
Firstpage :
1281
Lastpage :
1289
Abstract :
A water drop behaves differently from a large water body because of its strong viscosity and surface tension under the small scale. Surface tension causes the motion of a water drop to be largely determined by its boundary surface. Meanwhile, viscosity makes the interior of a water drop less relevant to its motion, as the smooth velocity field can be well approximated by an interpolation of the velocity on the boundary. Consequently, we propose a fast deformable surface model to realistically animate water drops and their flowing behaviors on solid surfaces. Our system efficiently simulates water drop motions in a Lagrangian fashion, by reducing 3D fluid dynamics over the whole liquid volume to a deformable surface model. In each time step, the model uses an implicit mean curvature flow operator to produce surface tension effects, a contact angle operator to change droplet shapes on solid surfaces, and a set of mesh connectivity updates to handle topological changes and improve mesh quality over time. Our numerical experiments demonstrate a variety of physically plausible water drop phenomena at a real-time rate, including capillary waves when water drops collide, pinch-off of water jets, and droplets flowing over solid materials. The whole system performs orders-of-magnitude faster than existing simulation approaches that generate comparable water drop effects.
Keywords :
approximation theory; capillary waves; computational fluid dynamics; computer animation; contact angle; deformation; drops; flow simulation; interpolation; jets; mesh generation; surface tension; two-phase flow; viscosity; water; 3D fluid dynamics; Lagrangian theory; approximation theory; boundary surface; capillary wave; contact angle; contact angle operator; deformable surface model; droplets; flow simulation; interpolation; mean curvature flow operator; mesh connectivity; mesh quality over time; pinch off; real-time water drop animation; solid material; solid surface; surface tension effect; viscosity; water drop motion; water drop phenomena; water jet; Deformable models; Force; Numerical models; Solids; Surface tension; Surface waves; Viscosity; Deformable surface model; mean curvature flow; surface tension; water drop simulation.;
fLanguage :
English
Journal_Title :
Visualization and Computer Graphics, IEEE Transactions on
Publisher :
ieee
ISSN :
1077-2626
Type :
jour
DOI :
10.1109/TVCG.2011.141
Filename :
5999663
Link To Document :
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