通过传播算法计算设计渐近大地混合网格壳

IF 3 3区 计算机科学 Q2 COMPUTER SCIENCE, SOFTWARE ENGINEERING Computer-Aided Design Pub Date : 2024-09-12 DOI:10.1016/j.cad.2024.103800
Bolun Wang , Maryam Almaskin , Helmut Pottmann
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引用次数: 0

摘要

如果复杂建筑结构的几何形状符合制造限制,则可以用简单而经济的方式建造。网格壳就是此类结构的例子,网格壳由平直的板条制成,这些板条在现场弯曲,使其成为设计表面的切线或法线。切向板条沿着表面的测地曲线,而法线板条则沿着渐近曲线连接。弗雷-奥托(Frei Otto)、朱利叶斯-纳特勒(Julius Natterer)等人的工作是将板条切向放置,而艾克-施林(Eike Schling)则在此基础上提出了同样包含与基准面法线相连的板条的结构。在本文中,我们讨论了由三个弯曲元素系列组成的网格壳,它们或与设计表面相切,或与设计表面法线相切,并排列成三角形网状。我们提出了计算设计这种网状结构的算法,这种算法从边界条带开始,部分在额外的引导下传播到整个网状结构。
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Computational design of asymptotic geodesic hybrid gridshells via propagation algorithms

Complex architectural structures may be built in a simple and cost-effective way if their geometry respects the fabrication constraints. Examples of such structures are provided by gridshells that are built from straight and flat slats which are bent on site so that they become tangential or normal to the design surface. Tangential slats follow geodesic curves on the surface, while normal slats are attached along asymptotic curves. Extending work by Frei Otto, Julius Natterer and others, who placed the slats tangentially, Eike Schling proposed structures which also contain slats normal to the reference surface. In the present paper we address those gridshells that consist of three families of bent elements, either tangential or normal to the design surface, and are arranged in a triangular web. We propose algorithms for the computational design of such webs that start from a boundary strip and propagate it, partially under additional guidance, to an entire web.

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来源期刊
Computer-Aided Design
Computer-Aided Design 工程技术-计算机:软件工程
CiteScore
5.50
自引率
4.70%
发文量
117
审稿时长
4.2 months
期刊介绍: Computer-Aided Design is a leading international journal that provides academia and industry with key papers on research and developments in the application of computers to design. Computer-Aided Design invites papers reporting new research, as well as novel or particularly significant applications, within a wide range of topics, spanning all stages of design process from concept creation to manufacture and beyond.
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