Predicting the Deflection of Square Plates Subjected to Fully Confined Blast Loading

The main objective of this study is to conveniently and rapidly develop a new dimensionless number to characterize and predict the deflection of square plates subjected to fully confined blast loading. Firstly, based on the Kirchhoff–Love theory and dimension analysis, a set of dimensionless paramet...

Full description

Bibliographic Details
Main Authors: Cheng Zheng, Yiwen Wang, Xiangshao Kong, Hu Zhou, Haibao Liu, Weiguo Wu
Format: Article
Language:English
Published: MDPI AG 2020-12-01
Series:Journal of Marine Science and Engineering
Subjects:
Online Access:https://www.mdpi.com/2077-1312/8/12/1031
id doaj-0228e82973a9496fb419e8e9b1eb76ca
record_format Article
spelling doaj-0228e82973a9496fb419e8e9b1eb76ca2021-04-02T20:47:22ZengMDPI AGJournal of Marine Science and Engineering2077-13122020-12-0181031103110.3390/jmse8121031Predicting the Deflection of Square Plates Subjected to Fully Confined Blast LoadingCheng Zheng0Yiwen Wang1Xiangshao Kong2Hu Zhou3Haibao Liu4Weiguo Wu5Key Laboratory of High Performance Ship Technology, Wuhan University of Technology, Ministry of Education, Wuhan 430063, ChinaGreen and Smart River-Sea-Going Ship, Cruise Ship and Yacht Research Center, Wuhan University of Technology, Wuhan 430063, ChinaKey Laboratory of High Performance Ship Technology, Wuhan University of Technology, Ministry of Education, Wuhan 430063, ChinaDepartment of Naval Architecture, Ocean and Structural Engineering, School of Transportation, Wuhan University of Technology, Wuhan 430063, ChinaDepartment of Mechanical Engineering, Imperial College London, South Kensington, London SW7 2AZ, UKKey Laboratory of High Performance Ship Technology, Wuhan University of Technology, Ministry of Education, Wuhan 430063, ChinaThe main objective of this study is to conveniently and rapidly develop a new dimensionless number to characterize and predict the deflection of square plates subjected to fully confined blast loading. Firstly, based on the Kirchhoff–Love theory and dimension analysis, a set of dimensionless parameters was obtained from the governing equation representing the response of a thin plate subjected to impact load. A new dimensionless number with a definite physical meaning was then proposed based on dimensional analysis, in which the influence of bending, torsion moment and membrane forces on the dynamic response of the blast-loaded plate were considered along with the related parameters of the blast' energy, the yield strength of the material, the plate thickness and dimensions of the confined space. By analyzing the experimental data of plates subjected to confined blast loading, an approximately linear relationship between the midpoint deflection–thickness ratio of the target plate and the new dimensionless number was derived. On this basis, an empirical formula to predict the deflection of square plates subjected to fully confined blast loading was subsequently regressed, and its calculated results agree well with the experimental data. Furthermore, numerical simulations of square plates subjected to blast loading in a cuboid chamber with different lengths were performed. The numerical results were compared with the calculated data to verify the applicability of the present empirical formula in different scenarios of blast loading from explosions in a cuboid space. It is indicated that the new dimensionless number and corresponding empirical formula presented in this paper have good applicability and reliability for the deflection prediction of plates subjected to fully confined explosions in a cuboid chamber with different lengths, especially when the plates experience a large deflection–thickness ratio.https://www.mdpi.com/2077-1312/8/12/1031deflection predictionconfined blast loadinglarge deflectionsquare platecuboid chamber
collection DOAJ
language English
format Article
sources DOAJ
author Cheng Zheng
Yiwen Wang
Xiangshao Kong
Hu Zhou
Haibao Liu
Weiguo Wu
spellingShingle Cheng Zheng
Yiwen Wang
Xiangshao Kong
Hu Zhou
Haibao Liu
Weiguo Wu
Predicting the Deflection of Square Plates Subjected to Fully Confined Blast Loading
Journal of Marine Science and Engineering
deflection prediction
confined blast loading
large deflection
square plate
cuboid chamber
author_facet Cheng Zheng
Yiwen Wang
Xiangshao Kong
Hu Zhou
Haibao Liu
Weiguo Wu
author_sort Cheng Zheng
title Predicting the Deflection of Square Plates Subjected to Fully Confined Blast Loading
title_short Predicting the Deflection of Square Plates Subjected to Fully Confined Blast Loading
title_full Predicting the Deflection of Square Plates Subjected to Fully Confined Blast Loading
title_fullStr Predicting the Deflection of Square Plates Subjected to Fully Confined Blast Loading
title_full_unstemmed Predicting the Deflection of Square Plates Subjected to Fully Confined Blast Loading
title_sort predicting the deflection of square plates subjected to fully confined blast loading
publisher MDPI AG
series Journal of Marine Science and Engineering
issn 2077-1312
publishDate 2020-12-01
description The main objective of this study is to conveniently and rapidly develop a new dimensionless number to characterize and predict the deflection of square plates subjected to fully confined blast loading. Firstly, based on the Kirchhoff–Love theory and dimension analysis, a set of dimensionless parameters was obtained from the governing equation representing the response of a thin plate subjected to impact load. A new dimensionless number with a definite physical meaning was then proposed based on dimensional analysis, in which the influence of bending, torsion moment and membrane forces on the dynamic response of the blast-loaded plate were considered along with the related parameters of the blast' energy, the yield strength of the material, the plate thickness and dimensions of the confined space. By analyzing the experimental data of plates subjected to confined blast loading, an approximately linear relationship between the midpoint deflection–thickness ratio of the target plate and the new dimensionless number was derived. On this basis, an empirical formula to predict the deflection of square plates subjected to fully confined blast loading was subsequently regressed, and its calculated results agree well with the experimental data. Furthermore, numerical simulations of square plates subjected to blast loading in a cuboid chamber with different lengths were performed. The numerical results were compared with the calculated data to verify the applicability of the present empirical formula in different scenarios of blast loading from explosions in a cuboid space. It is indicated that the new dimensionless number and corresponding empirical formula presented in this paper have good applicability and reliability for the deflection prediction of plates subjected to fully confined explosions in a cuboid chamber with different lengths, especially when the plates experience a large deflection–thickness ratio.
topic deflection prediction
confined blast loading
large deflection
square plate
cuboid chamber
url https://www.mdpi.com/2077-1312/8/12/1031
work_keys_str_mv AT chengzheng predictingthedeflectionofsquareplatessubjectedtofullyconfinedblastloading
AT yiwenwang predictingthedeflectionofsquareplatessubjectedtofullyconfinedblastloading
AT xiangshaokong predictingthedeflectionofsquareplatessubjectedtofullyconfinedblastloading
AT huzhou predictingthedeflectionofsquareplatessubjectedtofullyconfinedblastloading
AT haibaoliu predictingthedeflectionofsquareplatessubjectedtofullyconfinedblastloading
AT weiguowu predictingthedeflectionofsquareplatessubjectedtofullyconfinedblastloading
_version_ 1721546445904936960