Stochastic Robustness of Cable Dome Structures Under Impact Loads

IF 1.1 4区 工程技术 Q3 CONSTRUCTION & BUILDING TECHNOLOGY
Lian-meng Chen, Ben-cheng Huang, Yi-hong Zeng, Sun-kai Yan, Wei Li, Yi-yi Zhou, Shi-lin Dong
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Abstract

Previous studies have rarely investigated stochastic robustness of flexible cable dome structures under impact loads. In this study, the dynamic responses and failure modes of a Geiger cable dome structure were analysed under impact loads. The number of components damaged by impact and the loss of internal force in components were used to establish a structural damage index and an equation of failure mode control. Following this, by establishing the impact resistance failure limit state equation and combining the probabilistic and statistical characteristics of each design parameter of the structure, the probability of disproportionate failure of the structure undergoing disproportional damage under the impact load was calculated. Then, the stochastic robustness index \({I}_{\text{rob}}\) based on the probability of structural failure was proposed, and the key factors affecting the structural robustness were analysed through parameter analysis. The research results indicated the following. First, cable dome structures exhibited three types of failure modes under impact loads. Second, the stochastic robustness index fully reflected the probability of a cable dome structure sustaining disproportional damage under impact loads. Increasing the mass or speed of the impactor both increased the probability of the structure sustaining disproportional damage. An impact occurred closer to the centre of the structure, both the probability of overall structural failure and structural robustness performance increase, but the probability of the structure sustaining disproportional damage decreases. Third, increasing the prestress and cross-sectional area of the components might increase their impact resistance and structural robustness performance.

Abstract Image

缆索穹顶结构在冲击荷载下的随机鲁棒性
以往的研究很少研究柔性缆索穹顶结构在冲击载荷下的随机稳健性。本研究分析了盖革缆索穹顶结构在冲击载荷作用下的动态响应和破坏模式。通过分析受冲击损坏的部件数量和部件内力损失,建立了结构损坏指数和失效模式控制方程。随后,通过建立抗冲击失效极限状态方程,并结合结构各设计参数的概率和统计特征,计算出结构在冲击荷载作用下发生不成比例破坏的概率。然后,提出了基于结构失效概率的随机鲁棒性指数({I}_{\text{rob}}\),并通过参数分析,分析了影响结构鲁棒性的关键因素。研究结果表明首先,缆索穹顶结构在冲击载荷作用下表现出三种失效模式。其次,随机鲁棒性指数充分反映了缆索穹顶结构在冲击荷载作用下遭受不成比例破坏的概率。增加撞击器的质量或速度都会增加结构遭受不成比例破坏的概率。如果撞击发生在更靠近结构中心的位置,则整体结构破坏的概率和结构稳健性能都会增加,但结构遭受不成比例破坏的概率会降低。第三,增加构件的预应力和横截面积可以提高构件的抗冲击能力和结构稳固性。
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来源期刊
International Journal of Steel Structures
International Journal of Steel Structures 工程技术-工程:土木
CiteScore
2.70
自引率
13.30%
发文量
122
审稿时长
12 months
期刊介绍: The International Journal of Steel Structures provides an international forum for a broad classification of technical papers in steel structural research and its applications. The journal aims to reach not only researchers, but also practicing engineers. Coverage encompasses such topics as stability, fatigue, non-linear behavior, dynamics, reliability, fire, design codes, computer-aided analysis and design, optimization, expert systems, connections, fabrications, maintenance, bridges, off-shore structures, jetties, stadiums, transmission towers, marine vessels, storage tanks, pressure vessels, aerospace, and pipelines and more.
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