Static Stability Analysis of Single-Layer Reticulated Spherical Shell with Kiewitt-Sunflower Type

被引:0
作者
Peng Yu
Weijing Yun
Stéphane Bordas
Sheng He
Yiming Zhou
机构
[1] Guangxi University,College of Civil Engineering and Architecture, Key Laboratory of Disaster Prevention and Structural Safety of Ministry of Education, Guangxi Key Laboratory of Disaster Prevention and Structural Safety
[2] University of Luxembourg,Institute of Computational Engineering
[3] China Medical University Hospital,Department of Medical Research
[4] China Medical University,undefined
来源
International Journal of Steel Structures | 2021年 / 21卷
关键词
Single-layer reticulated spherical shell; Static stability; Buckling mode; Instability mode; Initial geometric imperfection;
D O I
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中图分类号
学科分类号
摘要
In this study, we use a large-scale parameter analysis and linear regression method to characterize the static stability of Kiewitt-sunflower-type single-layer reticulated spherical shell. Based on more than 15,000 numerical cases of elastic–plastic load–displacement process, and the investigations on the influence of buckling and instability mode, rise-span and ring-numbers ratio, efficiency of the structure, load distribution, support conditions, size of the initial geometric imperfection and distribution patterns are proceeded. We summarize the key effect for stable performance of structure, and develop the formulation to calculate the ultimate capacity of stability. The results show that Kiewitt-sunflower type single-layer reticulated spherical shell is sensitive to defect, and different distribution patterns of geometry defect lead to different structural buckling. The ultimate stability bearing capacity can be improved by increasing the rise-span and ring-numbers ratio. The asymmetrical load distribution has little effect on the stability. The most unfavorable eigenmode is arbitrary, and it is generally not the lowest order. We summarize the key effect for stable performance of structure, and develop the formulation to calculate the ultimate capacity of stability.
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页码:1859 / 1877
页数:18
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[1]  
Bruno L(2016)Effects of the Equivalent Geometric Nodal Imperfections on the stability of single layer grid shells Engineering Structures 112 184-199
[2]  
Sassone M(2016)Modeling geometric imperfections for reticulated shell structures using random field theory Engineering Structures 126 481-489
[3]  
Venuti F(1993)Complete load-deflection response and initial imperfection analysis of single-layer lattice dome International Journal of Space Structures 8 271-278
[4]  
Chen G(2010)Elasto-plastic stability of single-layer reticulated shells Thin-Walled Structures 48 827-836
[5]  
Zhang H(2010)Failure modes of reticulated domes subjected to impact and the judgment Thin-Walled Structures 48 143-149
[6]  
Rasmussen KJR(2012)Elasto-plastic stability of single-layer reticulated domes with initial curvature of members Thin-Walled Structures 60 239-246
[7]  
Chen X(2012)Stability of reticulated shells considering member buckling Journal of Constructional Steel Research 77 32-42
[8]  
Shen SZ(2017)Mechanical behavior of Ring-sleeve joints of single-layer reticulated shells Journal of Constructional Steel Research 128 601-610
[9]  
Fan F(2020)Experimental and numerical study on stability behavior of reticulated shell composed of plate members Journal of Constructional Steel Research 171 106102-239
[10]  
Cao Z(2018)Structural behavior of shallow geodesic lattice domes International Journal of Solids and Structures 155 225-82