DocumentCode
1837487
Title
Streamline modeling based on potential flow
Author
Suzuki, Yasuhiro ; Miura, Kenjiro T. ; Tanaka, Ichiro ; Masuda, Hiroshi
Author_Institution
Graduate Sch. of. Sci. & Technol., Shizuoka Univ., Hamamatsu, Japan
fYear
2001
fDate
2001
Firstpage
305
Lastpage
312
Abstract
Streamline modeling is a design methodology of fair free form surfaces where the tangent vectors are specified/manipulated to generate/deform them instead of the control points of the traditional surface representations (K.T. Miura et al., 1998). Creations and deformations of complex 3D free form shapes generally require a large amount of labour and cost. Therefore, the authors propose a novel modeling technique based on of fluid flow dynamics in order to create and deform high-quality surfaces more intuitively with a smaller number of parameters based on the streamline modeling. We construct a flow field based on the potential flow, then calculate tangent vectors in the flow field that are required for the streamline modeling. Streamlines are generated by numerically integrating the tangent vectors, then the surface is represented as a set of streamlines. The deformation of the surface is performed by changing of the flow field. We have developed a prototype design system using the new modeling technique
Keywords
CAD; computational fluid dynamics; deformation; digital simulation; engineering graphics; flow simulation; integration; 3D geometric models; complex 3D free form shapes; complex 3D shapes; control points; fair free form surface design; flow field; fluid flow dynamics; high-quality surface deformation; modeling technique; numerical integration; potential flow; prototype design system; streamline modeling; tangent vectors; traditional surface representations; Aerodynamics; Costs; Deformable models; Design methodology; Equations; Laboratories; Shape control; Spline; Surface reconstruction; Surface topography;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Graphics and Applications, 2001. Proceedings. Ninth Pacific Conference on
Conference_Location
Tokyo
Print_ISBN
0-7695-1227-5
Type
conf
DOI
10.1109/PCCGA.2001.962886
Filename
962886
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