Form-finding of shells containing both tension and compression using the Airy stress function

Q1 Arts and Humanities
M. Miki, Emil Adiels, W. Baker, T. Mitchell, Alexander Sehlström, Chris J. K. Williams
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引用次数: 3

Abstract

Pure-compression shells have been the central topic in the form-finding of shells. This study investigated tension-compression mixed-type shells by utilizing a NURBS-based isogeometric form-finding approach that analyses Airy stress functions to expand the possible plan geometry. A complete set of smooth version graphic statics tools is provided to support the analyses. The method is validated using examples with known solutions, and a further example demonstrates the possible forms of shells that the proposed method permits. Additionally, a guideline to configure a proper set of boundary conditions is presented through the lens of asymptotic lines of the stress functions.
利用艾里应力函数对包含张力和压缩的壳体进行找形
纯压缩壳一直是壳的形式查找的中心主题。本研究利用基于nurbs的等几何寻形方法,分析Airy应力函数以扩展可能的平面几何形状,研究了拉伸-压缩混合型壳体。提供了一套完整的平滑版本图形静态工具来支持分析。使用具有已知解的示例验证了该方法,并且进一步的示例演示了所提出方法允许的壳体的可能形式。此外,还通过应力函数的渐近线透镜给出了配置一组适当边界条件的准则。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Space Structures
International Journal of Space Structures Arts and Humanities-Conservation
CiteScore
2.00
自引率
0.00%
发文量
21
期刊介绍: The aim of the journal is to provide an international forum for the interchange of information on all aspects of analysis, design and construction of space structures. The scope of the journal encompasses structures such as single-, double- and multi-layer grids, barrel vaults, domes, towers, folded plates, radar dishes, tensegrity structures, stressed skin assemblies, foldable structures, pneumatic systems and cable arrangements. No limitation on the type of material is imposed and the scope includes structures constructed in steel, aluminium, timber, concrete, plastics, paperboard and fabric.
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