Detail preserving continuum simulation of straight hair

Author:

McAdams Aleka1,Selle Andrew2,Ward Kelly2,Sifakis Eftychios3,Teran Joseph3

Affiliation:

1. University of California, Los Angeles

2. Walt Disney Animation Studios

3. University of California, Los Angeles and Walt Disney Animation Studios

Abstract

Hair simulation remains one of the most challenging aspects of creating virtual characters. Most research focuses on handling the massive geometric complexity of hundreds of thousands of interacting hairs. This is accomplished either by using brute force simulation or by reducing degrees of freedom with guide hairs. This paper presents a hybrid Eulerian/Lagrangian approach to handling both self and body collisions with hair efficiently while still maintaining detail. Bulk interactions and hair volume preservation is handled efficiently and effectively with a FLIP based fluid solver while intricate hair-hair interaction is handled with Lagrangian self-collisions. Thus the method has the efficiency of continuum/guide based hair models with the high detail of Lagrangian self-collision approaches.

Funder

U.S. Department of Energy

Office of Naval Research

Division of Mathematical Sciences

Division of Computing and Communication Foundations

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Graphics and Computer-Aided Design

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