If you missed SIGGRAPH 2017 watch a selection of recorded Live Streaming Sessions.
If you missed SIGGRAPH 2017 watch a selection of recorded Live Streaming Sessions.
This design method for the damping properties of three-dimensional elastic objects includes anisotropic and nonlinear damping, as well as a stable integration method that produces only a small amount of artificial damping.
Hongyi Xu
University of Southern California
Jernej Barbič
University of Southern California
A layered human body model combines a data-driven method in the inner layer and physics simulation in the external layer, thereby creating dynamic soft-tissue deformation due to both pose changes and external forces, with learned physical parameters from 4D-captured data.
Meekyoung Kim
Korea Advanced Institute of Science and Technology
Gerard Pons-Moll
Max-Planck-Institut für Intelligente Systeme
Sergi Pujades
Max-Planck-Institut für Intelligente Systeme
Seungbae Bang
Korea Advanced Institute of Science and Technology
Jinwook Kim
Korea Institue of Science and Technology
Michael Black
Max-Planck-Institut für Intelligente Systeme
Sung-Hee Lee
Korea Advanced Institute of Science and Technology
This novel approach based on the XFEM simulates complex cutting of three-dimensional deformable solids. It also introduces a quadrature-rule construction for accurate integration over discontinuous polynomials and a preconditioning approach that allows robust simulation of fine-structural cutting using fully implicit time integration.
Dan Koschier
RWTH Aachen University
Jan Bender
RWTH Aachen University
Nils Thuerey
Technical University of Munich
A novel multi-component simulation framework that treats many of the key physical mechanisms governing the dynamics of wet hair. This approach yields an effective wet-hair simulator used to animate hair flipping, dog shaking, a spinning car wash roller brush dunked in water, and intricate hair coalescence effects.
Yun Fei
Columbia University
Henrique Maia
Columbia University
Christopher Batty
University of Waterloo
Changxi Zheng
Columbia University
Eitan Grinspun
Columbia University