Natural vibration of composite elliptical cylindrical shells filled with fluid

The aerospace industry often uses cylindrical shells with elliptical cross-section, which are manufactured from composite material using a filament winding method. During the fabrication process or operation of the structure, there is a probability of shape imperfection in the form of deviation from...

Full description

Bibliographic Details
Main Authors: Lekomtsev, Sergey Vladimirovich, Matveenko, Valerii P.
Format: Article
Language:English
Published: Saratov State University 2024-03-01
Series:Известия Саратовского университета. Новая серия. Серия Математика. Механика. Информатика
Subjects:
Online Access:https://mmi.sgu.ru/sites/mmi.sgu.ru/files/text-pdf/2024/02/71-85-lekomtsev-matveenko.pdf
_version_ 1797289590000713728
author Lekomtsev, Sergey Vladimirovich
Matveenko, Valerii P.
author_facet Lekomtsev, Sergey Vladimirovich
Matveenko, Valerii P.
author_sort Lekomtsev, Sergey Vladimirovich
collection DOAJ
description The aerospace industry often uses cylindrical shells with elliptical cross-section, which are manufactured from composite material using a filament winding method. During the fabrication process or operation of the structure, there is a probability of shape imperfection in the form of deviation from a circular cross-section. The vibration analysis of such structures containing fluid requires an in-depth study to determine the performance characteristics affecting their life cycle. In this article we develop a mathematical formulation and present the corresponding finite element algorithm for determining the natural frequencies of vibrations of layered composite elliptical cylindrical shells filled with fluid. The problem is solved in a three-dimensional formulation by the finite element method. The curvilinear surface of the shell is represented as a set of flat rectangular segments, in which the relations of the classical laminated plate theory are fulfilled. The membrane displacements are described using bilinear Lagrange shape functions. The deflection in the direction normal to the lateral surface and the rotation angles are approximated by incompatible cubic Hermite polynomials. Small vibrations of an ideal compressible fluid are described in the framework of the acoustic approximation by a wave equation for hydrodynamic pressure, which, together with the boundary conditions and the impermeability condition on the wetted surface, is transformed to a weak form. The verification of the developed numerical algorithm is carried out by comparing the obtained natural frequencies of vibration with the known data presented in the literature for layered composite circular cylindrical shells. A number of examples are considered to evaluate the influence of geometrical dimensions of the structure, boundary conditions at the shell edges and the ratio of ellipse semi-axes. New quantitative and qualitative dependencies have been established, and the possibility of the natural frequency control through the selection of parameters of composite material has been shown. 
first_indexed 2024-03-07T19:06:15Z
format Article
id doaj.art-4ded5d157fac40df8fb291be157a30ea
institution Directory Open Access Journal
issn 1816-9791
2541-9005
language English
last_indexed 2024-03-07T19:06:15Z
publishDate 2024-03-01
publisher Saratov State University
record_format Article
series Известия Саратовского университета. Новая серия. Серия Математика. Механика. Информатика
spelling doaj.art-4ded5d157fac40df8fb291be157a30ea2024-03-01T08:19:41ZengSaratov State UniversityИзвестия Саратовского университета. Новая серия. Серия Математика. Механика. Информатика1816-97912541-90052024-03-01241718510.18500/1816-9791-2024-24-1-71-85Natural vibration of composite elliptical cylindrical shells filled with fluidLekomtsev, Sergey Vladimirovich0Matveenko, Valerii P.1Institute of Continuous Media Mechanics of the Ural Branch of the Russian Academy of Sciences, Russia, 614013, Perm, Academ. Koroleva, 1Institute of Continuous Media Mechanics of the Ural Branch of the Russian Academy of Sciences, Russia, 614013, Perm, Academ. Koroleva, 1The aerospace industry often uses cylindrical shells with elliptical cross-section, which are manufactured from composite material using a filament winding method. During the fabrication process or operation of the structure, there is a probability of shape imperfection in the form of deviation from a circular cross-section. The vibration analysis of such structures containing fluid requires an in-depth study to determine the performance characteristics affecting their life cycle. In this article we develop a mathematical formulation and present the corresponding finite element algorithm for determining the natural frequencies of vibrations of layered composite elliptical cylindrical shells filled with fluid. The problem is solved in a three-dimensional formulation by the finite element method. The curvilinear surface of the shell is represented as a set of flat rectangular segments, in which the relations of the classical laminated plate theory are fulfilled. The membrane displacements are described using bilinear Lagrange shape functions. The deflection in the direction normal to the lateral surface and the rotation angles are approximated by incompatible cubic Hermite polynomials. Small vibrations of an ideal compressible fluid are described in the framework of the acoustic approximation by a wave equation for hydrodynamic pressure, which, together with the boundary conditions and the impermeability condition on the wetted surface, is transformed to a weak form. The verification of the developed numerical algorithm is carried out by comparing the obtained natural frequencies of vibration with the known data presented in the literature for layered composite circular cylindrical shells. A number of examples are considered to evaluate the influence of geometrical dimensions of the structure, boundary conditions at the shell edges and the ratio of ellipse semi-axes. New quantitative and qualitative dependencies have been established, and the possibility of the natural frequency control through the selection of parameters of composite material has been shown. https://mmi.sgu.ru/sites/mmi.sgu.ru/files/text-pdf/2024/02/71-85-lekomtsev-matveenko.pdfnatural vibrationelliptical cylindrical shellshydroelasticityideal fluidlayered composite material
spellingShingle Lekomtsev, Sergey Vladimirovich
Matveenko, Valerii P.
Natural vibration of composite elliptical cylindrical shells filled with fluid
Известия Саратовского университета. Новая серия. Серия Математика. Механика. Информатика
natural vibration
elliptical cylindrical shells
hydroelasticity
ideal fluid
layered composite material
title Natural vibration of composite elliptical cylindrical shells filled with fluid
title_full Natural vibration of composite elliptical cylindrical shells filled with fluid
title_fullStr Natural vibration of composite elliptical cylindrical shells filled with fluid
title_full_unstemmed Natural vibration of composite elliptical cylindrical shells filled with fluid
title_short Natural vibration of composite elliptical cylindrical shells filled with fluid
title_sort natural vibration of composite elliptical cylindrical shells filled with fluid
topic natural vibration
elliptical cylindrical shells
hydroelasticity
ideal fluid
layered composite material
url https://mmi.sgu.ru/sites/mmi.sgu.ru/files/text-pdf/2024/02/71-85-lekomtsev-matveenko.pdf
work_keys_str_mv AT lekomtsevsergeyvladimirovich naturalvibrationofcompositeellipticalcylindricalshellsfilledwithfluid
AT matveenkovaleriip naturalvibrationofcompositeellipticalcylindricalshellsfilledwithfluid