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首页> 外文期刊>Journal of Computing in Civil Engineering >Computational Grid Generation for the Design of Free-Form Shells with Complex Boundary Conditions
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Computational Grid Generation for the Design of Free-Form Shells with Complex Boundary Conditions

机译:具有复杂边界条件的自由形式壳体设计的计算网格生成

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Free-form grid structures have been widely used in various public buildings, and many are bounded by complex curves including internal voids. Modern computational design software enables the rapid creation and exploration of such complex surface geometries for architectural design, but the resulting shapes lack an obvious way for engineers to create a discrete structural grid to support the surface that manifests the architect's intent. This paper presents an efficient design approach for the synthesis of free-form grid structures based on guideline and surface-flattening methods, which consider complex features and internal boundaries. The method employs a fast and straightforward approach, which achieves fluent lines with bars of balanced length. The parametric domain of a complete nonuniform rational basis spline (NURBS) surface is first divided into a number of patches, and a discrete free-form surface is formed by mapping dividing points onto the surface. The free-form surface is then flattened based on the principle of equal area. Accordingly, the flattened rectangular lattices are then fit to the two-dimensional (2D) surface, with grids formed by applying a guideline method. Subsequently, the intersections of the guidelines and the complex boundary are obtained, and the guidelines are divided equally between boundaries to produce grids connected at the dividing points. Finally, the 2D grids are mapped back onto the three-dimensional (3D) surface and a spring-mass relaxation method is employed to further improve the smoothness of the resulting grids. The paper concludes by presenting realistic examples to demonstrate the practical effectiveness of the proposed method. (c) 2019 American Society of Civil Engineers.
机译:自由形式的网格结构已广泛用于各种公共建筑中,并且许多结构都受到包括内部空隙在内的复杂曲线的限制。现代计算设计软件可以快速创建和探索用于建筑设计的此类复杂表面几何形状,但是生成的形状缺少工程师创建明显的离散结构网格以支撑表面的明显方法,从而体现了建筑师的意图。本文提出了一种有效的设计方法,该方法基于准则和表面平坦化方法来综合考虑复杂特征和内部边界的自由形式网格结构。该方法采用了一种快速而直接的方法,该方法可实现具有平衡长度的条的流畅线条。首先将完整的非均匀有理基础样条(NURBS)曲面的参数域划分为多个面片,然后通过将分割点映射到曲面上来形成离散的自由曲面。然后,基于等面积原理将自由曲面平整。因此,然后将扁平化的矩形格子与通过应用准则方法形成的栅格拟合到二维(2D)表面。随后,获得参考线和复杂边界的交点,并且将参考线在边界之间平均分割,以生成在分割点连接的网格。最后,将2D网格重新映射到三维(3D)曲面上,并采用弹簧质量松弛方法进一步提高所得网格的平滑度。最后,通过提供一些实际的例子来证明所提出的方法的实际有效性。 (c)2019美国土木工程师学会。

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