Status | 已发表Published |
Title | Analysis on the shear failure of HSS S690-CWGs via mathematical modelling |
Creator | |
Date Issued | 2023 |
Source Publication | Engineering Failure Analysis
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ISSN | 1350-6307 |
Volume | 143 |
Abstract | This paper aims to present a new and accurate design equation by employing the applications of deep learning and mathematical modeling techniques in calculating the shear strength and the failure mode of corrugated web girders (CWG) formed by S690 high-strength steel (HSS). HSS provides slenderer and weight-efficient structures than those would be possible if ordinary-strength steels were used, while the corrugated web (CW) increases the shear stability of steel girders and eliminates the need of transverse stiffeners. Therefore, the CWGs and HSS can be combined into one structure for gaining more structural benefits for civil engineering applications. A finite element (FE) model is firstly established and verified by the available experimental data in the literature. Thereafter, 106 FE models of CWGs are generated and analyzed, then employed in deep learning and mathematical modeling techniques such as the neural network (NN) and Kriging model, respectively. This investigation helps to present a new mathematical model able to predict the shear strength of S690-CWG with almost zero mean square error. The predicted results via the new equation agree well with those via the experimental tests, FE analysis and NN predicted data. Moreover, the comparative results show that the currently proposed equation gives an accurate or even exact shear strength of S690-CWGs than thus via the existing equations in the literature. Finally, an extensive parametric study has been established to investigate the influence of the CWGs’ geometrical perimeters on the shear strength of S690-CWGs. |
Keyword | Bridge girders High strength steel Kriging model Neural network Shear strength |
DOI | 10.1016/j.engfailanal.2022.106881 |
URL | View source |
Indexed By | SCIE |
Language | 英语English |
WOS Research Area | Engineering ; Materials Science |
WOS Subject | Engineering, Mechanical ; Materials Science, Characterization & Testing |
WOS ID | WOS:000980729300002 |
Scopus ID | 2-s2.0-85140328424 |
Citation statistics | |
Document Type | Journal article |
Identifier | http://repository.uic.edu.cn/handle/39GCC9TT/10175 |
Collection | Faculty of Science and Technology |
Corresponding Author | Mohamed, Hazem Samih |
Affiliation | 1.School of Civil Engineering and Geomatics,Southwest Petroleum University,Chengdu,Sichuan,610500,China 2.Department of Statistics and Data Science,Faculty of Science and Technology,Beijing Normal University-Hong Kong Baptist University United International College,Zhuhai,519087,China 3.Guangdong Provincial Key Laboratory of Interdisciplinary Research and Application for Data Science,BNU-HKBU United International College,Zhuhai,519087,China 4.Department of Mathematics,Faculty of Science,Zagazig University,Zagazig,44519,Egypt 5.Civil Engineering Department,College of Engineering,Qassim University,Unaizah,54565,Saudi Arabia |
Recommended Citation GB/T 7714 | Mohamed, Hazem Samih,Elsawah, A. M.,Shao, Yong Boet al. Analysis on the shear failure of HSS S690-CWGs via mathematical modelling[J]. Engineering Failure Analysis, 2023, 143. |
APA | Mohamed, Hazem Samih, Elsawah, A. M., Shao, Yong Bo, Wu, Cheng Song, & Bakri, Mudthir. (2023). Analysis on the shear failure of HSS S690-CWGs via mathematical modelling. Engineering Failure Analysis, 143. |
MLA | Mohamed, Hazem Samih,et al."Analysis on the shear failure of HSS S690-CWGs via mathematical modelling". Engineering Failure Analysis 143(2023). |
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