Development and evaluation of novel modules for deployable tension-strut structures

Q1 Arts and Humanities
Abdelrahman Taha, A. Akl
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引用次数: 0

Abstract

There is a growing need for new alternatives of long-span roof structures with high level of transformability and structural robustness. This led to the development of deployable cable-strut structures, which are composed of a continuous net of struts and another continuous net of cables. Subsequently, a special type of these systems was pioneered and given the term deployable tension-strut structures (DTSSs). The motivation beyond this new concept was the lack of structural efficiency and form flexibility of conventional space trusses that are usually employed for covering large spaces. Typically, DTSSs are roof structures consisting of multiple modules put together to form the roof system. This paper is mainly concerned with developing new robust modules for DTSSs. The technique that was adopted for this purpose is a form-creation methodology previously introduced in the literature. A few modules were already developed based on this shape grammar. However, its potential to develop multiple efficient modules has not been sufficiently investigated. In this current work, the afore-mentioned algorithm was utilized to form 16 new modules. A comparative study based on a nonlinear finite element technique was conducted to investigate the efficiency of the novel modules as compared to that of the previously proposed in the literature. The results show that some of the new proposed modules are far more efficient than those presented in previous researches. Based on this comparative study, the most two efficient modules among the novel ones were picked for further study. Parametric studies were conducted on these two systems under gravity loads and wind loads considering the following parameters: no. of modules, span/depth ratio, and cables’ pre-stress level. For each parameter, the optimal range of values were determined to be used as a guide for the design of such systems.
新型可展开张拉杆结构模块的开发与评估
人们越来越需要具有高变形能力和结构坚固性的大跨度屋面结构的新替代品。这导致了可展开索杆结构的发展,它由一个连续的杆网和另一个连续的索网组成。随后,一种特殊类型的此类系统被首创,并被称为可展开张力支撑结构(DTSSs)。超越这个新概念的动机是缺乏结构效率和形式灵活性的传统空间桁架,通常用于覆盖大空间。通常,dtss是由多个模块组合在一起形成屋顶系统的屋顶结构。本文主要研究了为DTSSs开发新的鲁棒模块。为此目的采用的技术是先前在文献中介绍的表单创建方法。基于这种形状语法已经开发了一些模块。然而,其开发多个高效模块的潜力尚未得到充分研究。在当前的工作中,利用上述算法形成了16个新的模块。一项基于非线性有限元技术的比较研究进行了,以调查与先前提出的文献相比,新型模块的效率。结果表明,一些新提出的模块的效率远远高于以往的研究。在此对比研究的基础上,选取了其中效率最高的两个模块进行进一步研究。考虑以下参数,对这两个系统在重力荷载和风荷载作用下进行了参数化研究:模块、跨深比、电缆的预应力水平。对于每个参数,确定其最优取值范围,作为此类系统设计的指导。
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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