Abstract:Figure 1: Simulation of hair wetting. (left) The hair is moved around by the surrounding fluid. (top right) The interaction of hair and fluid, hair clumps form after leaving water surface. (bottom right) The effect of surface tension on sinking hair strands.
“…유체 시뮬레이 션에서는 물, 불, 연기 뿐만 아니라 날씨의 변화, 공기의 흐름 등 다양한 분야에서 활발하게 연구되어 왔다 [6,7,8,9]. 헤 어와 유체의 상호작용에 관련된 연구의 진행은 아직 초기 단 계이며, 최근에는 이런 분야를 연구하고자 몇 가지 기법들이 제안되었지만 대부분 젖은 헤어의 현상에 그 초점이 맞춰져 있다 [10,11,12,13,14]. 참고 문헌…”
In this paper, we propose a new framework that can express the detailed movement of liquid sprayed from wet hair or fur. In wet hair, not only the friction and adhesion of the hair but also the movement of the liquid has a distinctive motion compared to the dry hair. However, the recently proposed techniques only considered the contact force and friction of the hair and did not improve the movement of the liquid dispersed in the wet hair. This problem is detrimental to the quality of the result because it does not capture the detailed features expressed in the interaction of hair and liquid. The main point of this paper is to alleviate this problem and improve the quality of the result. As a result, we propose a combining framework that can efficiently express FLIP (Fluid-implicit particle) based fluid simulation and interaction of hair particles. The proposed method expresses the movement of the liquid sprayed in a curved shape which was not expressed in previous studies.
“…유체 시뮬레이 션에서는 물, 불, 연기 뿐만 아니라 날씨의 변화, 공기의 흐름 등 다양한 분야에서 활발하게 연구되어 왔다 [6,7,8,9]. 헤 어와 유체의 상호작용에 관련된 연구의 진행은 아직 초기 단 계이며, 최근에는 이런 분야를 연구하고자 몇 가지 기법들이 제안되었지만 대부분 젖은 헤어의 현상에 그 초점이 맞춰져 있다 [10,11,12,13,14]. 참고 문헌…”
In this paper, we propose a new framework that can express the detailed movement of liquid sprayed from wet hair or fur. In wet hair, not only the friction and adhesion of the hair but also the movement of the liquid has a distinctive motion compared to the dry hair. However, the recently proposed techniques only considered the contact force and friction of the hair and did not improve the movement of the liquid dispersed in the wet hair. This problem is detrimental to the quality of the result because it does not capture the detailed features expressed in the interaction of hair and liquid. The main point of this paper is to alleviate this problem and improve the quality of the result. As a result, we propose a combining framework that can efficiently express FLIP (Fluid-implicit particle) based fluid simulation and interaction of hair particles. The proposed method expresses the movement of the liquid sprayed in a curved shape which was not expressed in previous studies.
scite is a Brooklyn-based organization that helps researchers better discover and understand research articles through Smart Citations–citations that display the context of the citation and describe whether the article provides supporting or contrasting evidence. scite is used by students and researchers from around the world and is funded in part by the National Science Foundation and the National Institute on Drug Abuse of the National Institutes of Health.