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Authors: Tatiana Alexandrova ; Olivier Terraz and Djamchid Ghazanfarpour

Affiliation: XLIM Laboratory UMR CNRS 6172, University of Limoges, France

Keyword(s): liquid animation, movement simulation, dynamic soft body, Lattice-Boltzmann method.

Related Ontology Subjects/Areas/Topics: Animation and Simulation ; Animation and Simulation of Natural Environments ; Computer Vision, Visualization and Computer Graphics ; Plausible Motion Simulation

Abstract: The water animation by moving soft bodies, changing their shapes, is the subject of the present work. The mechanism of movement transformation from a body to a liquid is elaborated on the basis of Lattice-Boltzmann method of fluid modeling. The use of boundary conditions, destined to perform this transformation visually realistic and computationally quite inexpensive, is one of the main innovations of our approach. The model is applied to the jellyfish propulsion water.

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Paper citation in several formats:
Alexandrova, T.; Terraz, O. and Ghazanfarpour, D. (2006). INTERACTION BETWEEN WATER AND DYNAMIC SOFT BODIES. In Proceedings of the First International Conference on Computer Graphics Theory and Applications (VISIGRAPP 2006) - GRAPP; ISBN 972-8865-39-2; ISSN 2184-4321, SciTePress, pages 384-391. DOI: 10.5220/0001357003840391

@conference{grapp06,
author={Tatiana Alexandrova. and Olivier Terraz. and Djamchid Ghazanfarpour.},
title={INTERACTION BETWEEN WATER AND DYNAMIC SOFT BODIES},
booktitle={Proceedings of the First International Conference on Computer Graphics Theory and Applications (VISIGRAPP 2006) - GRAPP},
year={2006},
pages={384-391},
publisher={SciTePress},
organization={INSTICC},
doi={10.5220/0001357003840391},
isbn={972-8865-39-2},
issn={2184-4321},
}

TY - CONF

JO - Proceedings of the First International Conference on Computer Graphics Theory and Applications (VISIGRAPP 2006) - GRAPP
TI - INTERACTION BETWEEN WATER AND DYNAMIC SOFT BODIES
SN - 972-8865-39-2
IS - 2184-4321
AU - Alexandrova, T.
AU - Terraz, O.
AU - Ghazanfarpour, D.
PY - 2006
SP - 384
EP - 391
DO - 10.5220/0001357003840391
PB - SciTePress