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[1]王晓龙,涂 宇,祁泽凡,等.基于剖面轮廓点投射算法的管道交互式程序化建模方法[J].成都信息工程大学学报,2023,38(04):404-409.[doi:10.16836/j.cnki.jcuit.2023.04.005]
 WANG Xiaolong,TU Yu,QI Zefan,et al.An Interactive Procedural Modeling Method for Pipelines based on Profile Point Projection Algorithm[J].Journal of Chengdu University of Information Technology,2023,38(04):404-409.[doi:10.16836/j.cnki.jcuit.2023.04.005]
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基于剖面轮廓点投射算法的管道交互式程序化建模方法

参考文献/References:

[1] Hoffmann C M, Shapiro V.Solid modeling[J].Handbook of Discrete and Computational Geometry, Third Edition, 2017:1503-1539.
[2] Huang C Y, Tai Y K.Ting tools: interactive and procedural modeling of Chinese ting[J].The Visual Computer, 2013, 29(12):1303-1318.
[3] Huang C Y, Sheng Y S, Tai Y K.Interactive and procedural modeling of featured chinese architectures[A].13th International Symposium on Smart Graphics, 2015:16-28.
[4] Kopta D, Ize T, Spjut J, et al.Fast, effective BVH updates for animated scenes[P].Interactive 3D Graphics and Games, 2012:2-3.
[5] Lane J M, Riesenfeld R F, Theoretical Development for the Computer generation and Display of Piecewise Polynomial Surfaces[J].Transactions on Pattern Analysis and Machine Intelligence.IEEE, 1980(1):35-46.
[6] Baker T J.Mesh generation:Art or science?[J].Progress in Aerospace Sciences, 2005, 41(1):29-63.
[7] Catmull E, Clark J.Recursively generated B-spline surfaces on arbitrary topological meshes[J].Computer-aided design, 1978, 10(6):350-355.
[8] Owen S J, Staten M L, Canann S A, et al.Q-Morph: an indirect approach to advancing front quad meshing[J].International journal for numerical methods in engineering, 1999, 44(9):1317-1340.
[9] Cass R J, Benzley S E, Meyers R J, et al.Generalized 3-D paving: an automated quadrilateral surface mesh generation algorithm[J]. International Journal for Numerical Methods in Engineering, 1996, 39(9):1475-1489.
[10] Ims J, Duan Z, Wang Z J.Proceedings of The 22nd AIAA Computational Fluid Dynamics Conference[A].22nd AIAA Computational Fluid Dynamics Conference, 2015:2293.
[11] Jiao X M, Wang D.Reconstructing high-order surfaces for meshing[J].Engineering with Computers, 2012, 28(4):361-373.
[12] Thakur A-B, Ashis G-G, Satyandra K.A survey of CAD model simplification techniques for physics-based simulation applications[J].Computer-Aided Design, 2009; 41(2):65-80.
[13] White D-R, Saigal S, Owen S-J.Meshing complexity:predicting meshing difficulty for single part CAD models[J].Eng Comput 2005; 21(1):76-90.
[14] Sheffer A, Bercovier M, Blacker T, et al.Virtual topology operators for meshing[J].International Journal of Computational Geometry& Applications, 2000, 10(3):309-31.
[15] Sheffer A.Model simplification for meshing using face clustering[J].Computer-Aided Design, 2001, 33(13):925-34.
[16] Foucault G, Cuillière J-C, François V, et al.Adaptation of CAD model topology for finite element analysis[J].Computer-Aided Design, 2008, 40(2):176-96.
[17] Foucault G, Cuillière J-C, François V, et al.Generalizing the advancing front method to composite surfaces in the context of meshing constraints topology[J].Computer-Aided Design, 2013, 45(11):1408-25.
[18] Shapiro V, Tsukanov I, Grishin A.Geometric issues in computer aided design/computer aided engineering integration[J].J Comput Inf Sci Eng, 2011, 11(2):1-13.
[19] Nolan D-C, Tierney C-M, Armstrong C-G, et al.Defining simulation intent[J].Computer-Aided Design, 2015, 59:50-63.
[20] Yang J M, Zhao G.Surface Blending Using T-splines in Semi-NURBS Form[J].Computer-Aided Design, 2022, 146.

备注/Memo

收稿日期:2022-09-07
基金项目:四川省科技厅重大专项资助项目(2022ZDZX0001)
通信作者:何晓曦.Email:13539852@qq.com

更新日期/Last Update: 2023-07-10