Non-axisymmetric problems of unsteady deformation of cylindrical shells with filler

Circular cylindrical shells, as structural elements, have found wide application in various fields of mechanical engineering. Thin-walled layered shells have also found wide application as components in underwater objects, air and space vehicles and in many other engineering structures. The aim of t...

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Main Authors: Rakhmanov Bahodir, Akhmedov Sharifboy, Karimov Isroil, Choriev Mirjalol, Uralov Utkir
Format: Article
Language:English
Published: EDP Sciences 2023-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/56/e3sconf_wfces2023_01001.pdf
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author Rakhmanov Bahodir
Akhmedov Sharifboy
Karimov Isroil
Choriev Mirjalol
Uralov Utkir
author_facet Rakhmanov Bahodir
Akhmedov Sharifboy
Karimov Isroil
Choriev Mirjalol
Uralov Utkir
author_sort Rakhmanov Bahodir
collection DOAJ
description Circular cylindrical shells, as structural elements, have found wide application in various fields of mechanical engineering. Thin-walled layered shells have also found wide application as components in underwater objects, air and space vehicles and in many other engineering structures. The aim of this work is to study the action of a non-axisymmetric moving wave of normal pressure on a cylindrical shell interacting with an ideal compressible fluid. The problem statement is given, solution methods are developed, and numerical results are obtained for new problems of stationary deformation of infinitely long viscoelastic cylindrical shells on a viscoelastic foundation when a non-axisymmetric normal pressure wave moves along the shell axis with up to resonant velocity. As an example, considered the action of a non-axisymmetric moving wave of normal pressure on a cylindrical shell interacting with an ideal compressible fluid. The solution methods are based on the joint application of the integral Fourier transform along the axial coordinate and the expansion of all given and desired values into Fourier series along the angular coordinate. An efficient algorithm for the joint calculation of integrals and Fourier series has been developed and implemented on a computer. It has been established that paying to attention the viscoelastic properties of the shell material reduces the deflections by 10–15%, and also makes it possible to evaluate the damping capabilities of the system.
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spelling doaj.art-e512634cdb3641d489004816d4561dc42023-08-28T12:28:08ZengEDP SciencesE3S Web of Conferences2267-12422023-01-014190100110.1051/e3sconf/202341901001e3sconf_wfces2023_01001Non-axisymmetric problems of unsteady deformation of cylindrical shells with fillerRakhmanov Bahodir0Akhmedov Sharifboy1Karimov Isroil2Choriev Mirjalol3Uralov Utkir4Urgench State University, Dept.of ConstructionBukhara Institute of Natural Resources Management, Dept.of Mathematics & natural sciencesTashkent Chemical Technology Institute, Dept.of MathematicsTashkent Chemical Technology Institute, Dept.of MathematicsTashkent Chemical Technology Institute, Dept.of MathematicsCircular cylindrical shells, as structural elements, have found wide application in various fields of mechanical engineering. Thin-walled layered shells have also found wide application as components in underwater objects, air and space vehicles and in many other engineering structures. The aim of this work is to study the action of a non-axisymmetric moving wave of normal pressure on a cylindrical shell interacting with an ideal compressible fluid. The problem statement is given, solution methods are developed, and numerical results are obtained for new problems of stationary deformation of infinitely long viscoelastic cylindrical shells on a viscoelastic foundation when a non-axisymmetric normal pressure wave moves along the shell axis with up to resonant velocity. As an example, considered the action of a non-axisymmetric moving wave of normal pressure on a cylindrical shell interacting with an ideal compressible fluid. The solution methods are based on the joint application of the integral Fourier transform along the axial coordinate and the expansion of all given and desired values into Fourier series along the angular coordinate. An efficient algorithm for the joint calculation of integrals and Fourier series has been developed and implemented on a computer. It has been established that paying to attention the viscoelastic properties of the shell material reduces the deflections by 10–15%, and also makes it possible to evaluate the damping capabilities of the system.https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/56/e3sconf_wfces2023_01001.pdf
spellingShingle Rakhmanov Bahodir
Akhmedov Sharifboy
Karimov Isroil
Choriev Mirjalol
Uralov Utkir
Non-axisymmetric problems of unsteady deformation of cylindrical shells with filler
E3S Web of Conferences
title Non-axisymmetric problems of unsteady deformation of cylindrical shells with filler
title_full Non-axisymmetric problems of unsteady deformation of cylindrical shells with filler
title_fullStr Non-axisymmetric problems of unsteady deformation of cylindrical shells with filler
title_full_unstemmed Non-axisymmetric problems of unsteady deformation of cylindrical shells with filler
title_short Non-axisymmetric problems of unsteady deformation of cylindrical shells with filler
title_sort non axisymmetric problems of unsteady deformation of cylindrical shells with filler
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/56/e3sconf_wfces2023_01001.pdf
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