TY - GEN
T1 - A novel fluid-solid coupling framework integrating FLIP and shape matching methods
AU - Gao, Yang
AU - Li, Shuai
AU - Qin, Hong
AU - Hao, Aimin
N1 - Publisher Copyright:
© 2017 ACM.
PY - 2017/6/27
Y1 - 2017/6/27
N2 - Physically-based fluid animation and solid deformation driven by numerical simulation have manifested their significance for many graphics applications during the past two decades. For example, the fluid implicit particle (FLIP) method and shape matching technique based on position based dynamics (PBD) have demonstrated their unique graphics strength in fluid and solid animation, respectively. We propose a novel integrated approach supporting the seamless unification of FLIP and shape matching. We devise new algorithms to tackle existing difficulties when handling new phenomena such as high-fidelity fluid-solid interaction and solid melting. The key innovation of this paper is a unified Lagrangian framework that seamlessly blends FLIP and PBD based shape matching constraint towards the natural yet strong coupling between fluid and deformable solid. Within our integrated framework, it enables many complicated fluid-solid phenomena with ease. We conduct various kinds of experiments. All the results demonstrate the advantages of our unified hybrid approach towards visual fidelity, efficiency, stability, and versatility.
AB - Physically-based fluid animation and solid deformation driven by numerical simulation have manifested their significance for many graphics applications during the past two decades. For example, the fluid implicit particle (FLIP) method and shape matching technique based on position based dynamics (PBD) have demonstrated their unique graphics strength in fluid and solid animation, respectively. We propose a novel integrated approach supporting the seamless unification of FLIP and shape matching. We devise new algorithms to tackle existing difficulties when handling new phenomena such as high-fidelity fluid-solid interaction and solid melting. The key innovation of this paper is a unified Lagrangian framework that seamlessly blends FLIP and PBD based shape matching constraint towards the natural yet strong coupling between fluid and deformable solid. Within our integrated framework, it enables many complicated fluid-solid phenomena with ease. We conduct various kinds of experiments. All the results demonstrate the advantages of our unified hybrid approach towards visual fidelity, efficiency, stability, and versatility.
KW - FLIP
KW - Position based dynamics
KW - Shape matching
KW - Solid deformation
UR - https://www.scopus.com/pages/publications/85025478672
U2 - 10.1145/3095140.3095151
DO - 10.1145/3095140.3095151
M3 - Conference contribution
AN - SCOPUS:85025478672
T3 - ACM International Conference Proceeding Series
BT - CGI 2017 - Proceedings of the 2017 Computer Graphics International Conference
PB - Association for Computing Machinery
T2 - 2017 Computer Graphics International Conference, CGI 2017
Y2 - 27 June 2017 through 30 June 2017
ER -