Porous deformable shell simulation with surface water flow and saturation
Kiwon Um, Tae-Yong Kim, Youngdon Kwon, JungHyun Han
In Computer Animation and Virtual Worlds, 24(3-4), 2013.
Abstract: This paper proposes a method for simulating the dynamics of porous deformable shells in the presence of water that floats on the surface or is absorbed into the interior. The proposed method enables various effects such as surface flow, capillary flow involving absorption and saturation of water, changes of the material properties caused by water saturation, and the deformable body dynamics including tearing. The experiments demonstrate that the proposed method produces promising results.
Keyword(s): shell simulation, fluid simulation, absorption, diffusion, tearing
Article URL: http://dx.doi.org/10.1002/cav.1497
BibTeX format:
@article{Um:2013:PDS,
  author = {Kiwon Um and Tae-Yong Kim and Youngdon Kwon and JungHyun Han},
  title = {Porous deformable shell simulation with surface water flow and saturation},
  journal = {Computer Animation and Virtual Worlds},
  volume = {24},
  number = {3-4},
  pages = {247--254},
  year = {2013},
}
Search for more articles by Kiwon Um.
Search for more articles by Tae-Yong Kim.
Search for more articles by Youngdon Kwon.
Search for more articles by JungHyun Han.

Return to the search page.


graphbib: Powered by "bibsql" and "SQLite3."