In representing automobile parts with mesh in the field of reverse engineering or finite element generation, the mesh reconstruction and data exchanging between different CAD/CAM systems often introduce many invisible...In representing automobile parts with mesh in the field of reverse engineering or finite element generation, the mesh reconstruction and data exchanging between different CAD/CAM systems often introduce many invisible topological and geometrical errors into mesh. These artifacts can cause serious problems in subsequent operations such as finite element analysis, reverse engineering, animation, and simulation. In this study we propose a practical method for repairing topological and geometrical errors on mesh. First, coincident vertices during mesh input are removed, fol- lowed by the identification of non-manifold vertices and edges. The non-manifold vertices are modified, and the facets having non-manifold edges are removed. Finally, faces that have the wrong orientations in the mesh are re-oriented. Experiments show that our methods can eliminate most common mesh errors quickly and effectively. The refined mesh can be properly used in subsequent operations.展开更多
[Objective] The aim was to discuss the morphological differences of four carp populations.[Method] Based on traditional morphological data(including countable and measurable characters) and framework data,the morpho...[Objective] The aim was to discuss the morphological differences of four carp populations.[Method] Based on traditional morphological data(including countable and measurable characters) and framework data,the morphological differences and phylogenesis of Yellow River carp population(YR),wild four-naris carp population(WF),farmed four-naris carp population(FF) and carp population from Suzhou section of Wusong River(WR) were studied by means of multivariate analysis.[Result] There was no significant difference(P〉0.05) in countable characters among four carp populations.Discriminant analysis showed the discriminating accuracy of YR,WF,FF and WR population were 87.5%,78.1%,73.5% and 96.8% respectively,and the synthetic discriminating accuracy of four populations was up to 83.7%.In addition,cluster analysis revealed that YR population and WF population clustered together,while FF population and WR population clustered together.Principal component analysis indicated that the morphological differences among four populations mainly came from the head,tail and vertical axis of fish.[Conclusion] The study could provide theoretical foundations for the purification and rejuvenation of rare four-naris carp.展开更多
文摘In representing automobile parts with mesh in the field of reverse engineering or finite element generation, the mesh reconstruction and data exchanging between different CAD/CAM systems often introduce many invisible topological and geometrical errors into mesh. These artifacts can cause serious problems in subsequent operations such as finite element analysis, reverse engineering, animation, and simulation. In this study we propose a practical method for repairing topological and geometrical errors on mesh. First, coincident vertices during mesh input are removed, fol- lowed by the identification of non-manifold vertices and edges. The non-manifold vertices are modified, and the facets having non-manifold edges are removed. Finally, faces that have the wrong orientations in the mesh are re-oriented. Experiments show that our methods can eliminate most common mesh errors quickly and effectively. The refined mesh can be properly used in subsequent operations.
基金Supported by Open Fund of Key Laboratory of Ecological Environment and Resources of Inland Fisheries,Chinese Academy of Fishery SciencesThree Projects for Fishery of Jiangsu Province(K2008-3)~~
文摘[Objective] The aim was to discuss the morphological differences of four carp populations.[Method] Based on traditional morphological data(including countable and measurable characters) and framework data,the morphological differences and phylogenesis of Yellow River carp population(YR),wild four-naris carp population(WF),farmed four-naris carp population(FF) and carp population from Suzhou section of Wusong River(WR) were studied by means of multivariate analysis.[Result] There was no significant difference(P〉0.05) in countable characters among four carp populations.Discriminant analysis showed the discriminating accuracy of YR,WF,FF and WR population were 87.5%,78.1%,73.5% and 96.8% respectively,and the synthetic discriminating accuracy of four populations was up to 83.7%.In addition,cluster analysis revealed that YR population and WF population clustered together,while FF population and WR population clustered together.Principal component analysis indicated that the morphological differences among four populations mainly came from the head,tail and vertical axis of fish.[Conclusion] The study could provide theoretical foundations for the purification and rejuvenation of rare four-naris carp.