NUMERICAL MODELING OF THE BUCKLING RESISTANCE OF RULED HELICOIDAL SHELLS

The paper concerns the buckling analysis of thin shells of right helicoid form. The buckling analysis was performed by the means of finite element software. Shells with variable pitch number and same contour radiuses and height were compared, their straight edges fixed and the curvilinear contours f...

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Main Authors: Mathieu Giloulbe, Aleksei S Markovich, Evgeniya M Tupikova, Yulian V Zhurbin
Format: Article
Language:English
Published: Peoples’ Friendship University of Russia (RUDN University) 2018-12-01
Series:RUDN Journal of Engineering Research
Subjects:
Online Access:http://journals.rudn.ru/engineering-researches/article/view/18916
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author Mathieu Giloulbe
Aleksei S Markovich
Evgeniya M Tupikova
Yulian V Zhurbin
author_facet Mathieu Giloulbe
Aleksei S Markovich
Evgeniya M Tupikova
Yulian V Zhurbin
author_sort Mathieu Giloulbe
collection DOAJ
description The paper concerns the buckling analysis of thin shells of right helicoid form. The buckling analysis was performed by the means of finite element software. Shells with variable pitch number and same contour radiuses and height were compared, their straight edges fixed and the curvilinear contours free. Was used for the analysis triangular shell finite elements (No. 42). The total number of nodal unknowns was the same in each of the considered tasks and was 16 206. Numerical investigation of the stability was performed by the finite element method in the software package Lira-Sapr 2017. The number of nodes in each task was the same. The loading includes combination of gravity (dead load) and vertical equally distributed load. The buckling mode and stability factor for every case is calculated. Boundary conditions - elastic built in shells along the bottom and top generatrices. To plot the midsurface of each shell were used parametric equations in rectangular coordinates. Of particular interest is the study of natural oscillations of the shells considered. To define the frequencies and forms of free vibrations is taken into account only the own weight of the helicoidal shells.
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spelling doaj.art-1462cb97ef5f4aa0bbeebe0a70e8f3852023-02-02T02:38:47ZengPeoples’ Friendship University of Russia (RUDN University)RUDN Journal of Engineering Research2312-81432312-81512018-12-0119220321310.22363/2312-8143-2018-19-2-203-21316642NUMERICAL MODELING OF THE BUCKLING RESISTANCE OF RULED HELICOIDAL SHELLSMathieu Giloulbe0Aleksei S Markovich1Evgeniya M Tupikova2Yulian V Zhurbin3<p>Российский университет дружбы народов (РУДН)</p><p>Российский университет дружбы народов (РУДН)</p><p>Российский университет дружбы народов (РУДН)</p><p>Российский университет дружбы народов (РУДН)</p>The paper concerns the buckling analysis of thin shells of right helicoid form. The buckling analysis was performed by the means of finite element software. Shells with variable pitch number and same contour radiuses and height were compared, their straight edges fixed and the curvilinear contours free. Was used for the analysis triangular shell finite elements (No. 42). The total number of nodal unknowns was the same in each of the considered tasks and was 16 206. Numerical investigation of the stability was performed by the finite element method in the software package Lira-Sapr 2017. The number of nodes in each task was the same. The loading includes combination of gravity (dead load) and vertical equally distributed load. The buckling mode and stability factor for every case is calculated. Boundary conditions - elastic built in shells along the bottom and top generatrices. To plot the midsurface of each shell were used parametric equations in rectangular coordinates. Of particular interest is the study of natural oscillations of the shells considered. To define the frequencies and forms of free vibrations is taken into account only the own weight of the helicoidal shells.http://journals.rudn.ru/engineering-researches/article/view/18916устойчивость оболочеккомбинация нагрузоклинейчатые геликоидальные оболочкипоперечные сдвигиНДСпрямой геликоидоболочки сложной геометриикоэффициент устойчивости
spellingShingle Mathieu Giloulbe
Aleksei S Markovich
Evgeniya M Tupikova
Yulian V Zhurbin
NUMERICAL MODELING OF THE BUCKLING RESISTANCE OF RULED HELICOIDAL SHELLS
RUDN Journal of Engineering Research
устойчивость оболочек
комбинация нагрузок
линейчатые геликоидальные оболочки
поперечные сдвиги
НДС
прямой геликоид
оболочки сложной геометрии
коэффициент устойчивости
title NUMERICAL MODELING OF THE BUCKLING RESISTANCE OF RULED HELICOIDAL SHELLS
title_full NUMERICAL MODELING OF THE BUCKLING RESISTANCE OF RULED HELICOIDAL SHELLS
title_fullStr NUMERICAL MODELING OF THE BUCKLING RESISTANCE OF RULED HELICOIDAL SHELLS
title_full_unstemmed NUMERICAL MODELING OF THE BUCKLING RESISTANCE OF RULED HELICOIDAL SHELLS
title_short NUMERICAL MODELING OF THE BUCKLING RESISTANCE OF RULED HELICOIDAL SHELLS
title_sort numerical modeling of the buckling resistance of ruled helicoidal shells
topic устойчивость оболочек
комбинация нагрузок
линейчатые геликоидальные оболочки
поперечные сдвиги
НДС
прямой геликоид
оболочки сложной геометрии
коэффициент устойчивости
url http://journals.rudn.ru/engineering-researches/article/view/18916
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AT alekseismarkovich numericalmodelingofthebucklingresistanceofruledhelicoidalshells
AT evgeniyamtupikova numericalmodelingofthebucklingresistanceofruledhelicoidalshells
AT yulianvzhurbin numericalmodelingofthebucklingresistanceofruledhelicoidalshells