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面向混合曲面模型的自动拓扑生成算法 被引量:3

Automatic topology generation algorithm for hybrid surface models
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摘要 为兼顾连续曲面和离散曲面表征的长处,提出混合曲面模型的概念,将2类表征统一到曲面B-rep数据结构中.基于混合曲面模型实现新的连续曲面自动拓扑生成算法,可修复连续曲面模型中存在的边界曲线交缠和存在细缝等缺陷.新算法修复离散曲面,利用离散曲面和连续曲面之间的基本映射关系重建连续曲面丢失的B-rep拓扑.拓扑修复后,可复用基于有效B-Rep的曲面模型特征简化及网格生成算法.在整个算法流程中,几何计算主要定义在离散曲面上,连续模型的形状没有变化,且最终网格点都在连续模型上.结果表明,新算法能够针对包含交缠和细缝等缺陷的连续曲面模型生成拓扑正确且质量较高的曲面网格,可满足CFD等应用对高几何保真网格模型的要求. An enhanced boundary representation (B-rep) that combines the continuous and discrete surface representations was proposed to exploit the strengths of both representations, which enables a novel automatic topology repairing algorithm for continuous surfaces with small gaps and overlaps on surface bounda- ries. The proposed algorithm first repairs the discrete dual of the input continuous model, and then re- builds the lost B-rep topologies of the continuous model based on the dual relation of the discrete and continuous models. After topology repairing, the existing surface defeaturing and meshing algorithms that require a valid B-rep input are reused. In all of these steps, geometry computations mainly occur on the discrete model. More importantly, the geometry of the continuous model remains unchanged from the very beginning, and the output surface mesh is loyal to the continuous model. Therefore, this outcome is desired by the applications such as computational fluid dynamics (CFD) where a mesh model with high geometrical fidelity is preferred.
出处 《浙江大学学报(工学版)》 EI CAS CSCD 北大核心 2014年第5期923-933,共11页 Journal of Zhejiang University:Engineering Science
基金 国家自然科学基金资助项目(11172267 10872182) 国家"十一五"科技支撑计划资助项目(2009BAG12A01-C02) 国家水体污染控制与治理科技重大专项(2009ZX07424-001) 中央高校基本科研业务费专项资金(2012FZA4026) 浙江省自然科学基金资助项目(Y1110038)
关键词 几何修复 特征简化 网格生成 虚拓扑 边界表征 geometry repairing defeaturing mesh generation virtual topology boundary representation
作者简介 曹秉万(1982-),男,博士生,从事CAD/CAE系统集成的研究工作.E-mail:caobingwan@163.com 通信联系人:陈建军,男,副教授,博导.E-mail:chenjj@zju.edu.cn.
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参考文献19

  • 1CLARK B. Removing small features with real CAD op erations [C] // Proceedings of the 16th InternationalMeshing Roundtable. Seattle, WA: Springer Berlin Hei- delberg, 2008: 183-198.
  • 2NOE:L F. Global parameterization of a topological sur- face defined as a collection of trimmed bi-parametric p * atches: application to automatic mesh construction[J]. International Journal for Numerical Methods in Engineer- ing, 2002, 54(7): 965-986.
  • 3QUADROS W, OWENS. Defeaturing cad models using a geometry-based size field and facet-based reduction op- erators [C]/// Proceedings of the 18th International Mes- hing Roundtable. Salt Lake City, UT: Springer Berlin Heidelberg, 2008: 301-318.
  • 4PATEL P S, MARCUM D L. Robust and efficient cad topology generation using adaptive tolerances [J]. Inter- national Journal for Numerical Methods in Engineering, 2008, 75(3): 355-378.
  • 5PATEL P S, MARCUM D L, REMOTIGUE M G. Automatic CAD model tology generation [J]. Interna- tional Journal for Numerical Methods in Fluids, 2006, 52 (8) : 823 - 841.
  • 6HAMRI O, LION J C, GIANNINI F, et al. Software environmentfor CAD/CAE integration [J]. Advances in Engineering Software, 2010, 41(10/11) : 1211 - 1222.
  • 7SHEFFER A, BERCOVIER M, BLACKER T, et al. Virtual topology operators for meshing [J]. Internation- al Journal of Computational Geometry & Applications, 2000, 10(03): 309-331.
  • 8FLOATER M, HORMANN K. Advances in multireso- lution for geometric modelling [M]. Heidelberger: Springer, 2005:157 - 186.
  • 9ZHENG Yao, WEATHERILL N P, TURNER-SMITH E A. Interactive geometry utility environment for multi- disciplinary computational engineering [J]. International Journal for Numerical Methods in Engineering, 2002, 53 (6) : 1277 - 1299.
  • 10DEY S, SHEPHARD M S , FLAHERTY J E. Geom- etry representation issues associated with p-version fi- nite element computations [J]. Cumputer Methods in Applied Mechanics and Engineering, 1997, 150 (1/4) : 39 - 55.

二级参考文献35

  • 1张文明,刘彬,徐刚.三维实体网格自适应划分算法[J].机械工程学报,2009,45(11):266-270. 被引量:9
  • 2黄晓东,杜群贵,叶邦彦.二维几何特征自适应有限元网格生成(一)——几何特征识别[J].计算机辅助设计与图形学学报,2004,16(7):923-928. 被引量:7
  • 3HUANG Xiaodong,DU Qungui,YE Bangyan.METHOD FOR ADAPTIVE MESH GENERATION BASED ON GEOMETRICAL FEATURES OF 3D SOLID[J].Chinese Journal of Mechanical Engineering,2006,19(3):330-334. 被引量:3
  • 4NAKAHASHI K , SHAROV D. Direct surface triangulation using the advancing front method[C]//AIAA Computational Fluid Dynamics Conference, San Diego, CA, USA. 1995: AIAA-1995-1686.442-451.
  • 5BOROUCHAKI H, GEORGE P L, HECHT F, et al. Delatmay mesh generation governed by metric specifications, part I. algorithms[J]. Finite Elem. Anal. Des., 1997, 25(1-2): 61-83.
  • 6ITO Y, NAKAHASttI K. Surface triangulation for polygonal models based on CAD data[J]. Int. J. Numer. Methods Fluids, 2002, 39(1): 75-96.
  • 7RYPL D, BITTNAR Z. Generation of computational surface meshes of STL models[J]. J. Comput. Appl. Math., 2006, 192(1): 148-151.
  • 8BECHET E, CUILLIERE J C, TROCHU F. Generation of a finite element mesh from Stereolithography (STL) files[J]. Computer-Aided Des., 2002, 34(1): 1-17.
  • 9WANG D, HASSAN O, MORGAN K, et al. Enhanced remeshing from STL files with applications to surface grid generation[J]. Commun. Numer. Methods Eng., 2007,23(3): 227-239.
  • 10WALTON D J, MEEK D S. A triangular G1 patch from boundary curves[J]. Computer-Aided Des., 1996, 28(2): 113-123.

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