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MESH CONSTRUCTION DEDICATED TO A MULTI-REPRESENTATION FOR STRUCTURE ANALYSIS BASED ON AN INITIAL POLYHEDRAL GEOMETRY

机译:基于初始多面体几何形状的构造分析,网眼施工专用于多表示

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The aim of this paper is to present the first part of a new approach devoted to the generation of a data structure and operators for the hierarchical representation of 3D polyhedra. Here are described the treatments which allow to create some of the elements of this hierarchical model. At first, partitions of the initial polyhedron are mapped into planar connex hulls. Then, these domains are used like a piecewise parametric 2D space for subsequent polyhedra generations. In order to create such a mapping, the initial 3D polyhedron is partitioned to produce simply convex subsets which can be submitted to the parametrization process. The next step consists in the generation of a minimum representation of the initial 3D polyhedron. This representation forms the root of the hierarchical data structure. Then, the mapping obtained allows the construction of various polyhedral representations of the initial geometry. Criteria related to 3D parameters are used to generate the range of polyhedra. The reverse mapping (from 2D to 3D) helps reduce the computing cost required to generate 3D polyhedra. Each 3D polyhedron generation is carried out under 3D geometric criteria depending on the context. i.e. : structural analysis, levels of details of a geometric model,... Among the goals of the hierarchical data structure. the unification and the inter dependency of the meshes required to carry out the structural analysis of a part occupies a central position.
机译:本文的目的是展示一种新方法的第一部分,该方法专门用于生成3D多面体的分层表示的数据结构和运营商。这里描述了允许创建该层级模型的一些元素的处理。首先,初始多面体的分区被映射到平面连接船体中。然后,这些域用于随后的Polyhedra Maysations的分段参数2D空间。为了创建这样的映射,初始3D多面体被划分以产生简单的凸子集,可以提交给参数化过程。下一步包括生成初始3D多面体的最小表示。此表示形成分层数据结构的根。然后,获得的映射允许构建初始几何形状的各种多面体表示。与3D参数相关的标准用于生成多面体的范围。反向映射(从2D到3D)有助于降低生成3D多面体所需的计算成本。根据上下文,每个3D多面体生成在3D几何标准下执行。即:结构分析,几何模型的细节水平,...分层数据结构的目标中的目标。统一和对部件结构分析所需的网格的统一和依赖性占据了中心位置。

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