The solution of the problem of free circulation of circular arcs by numerical analytical boundary elements method

The work is devoted to determining the natural frequencies and vibration modes of a circular arch using the numerical-analytical boundary elements method. A differential equation of the natural vibrations of the arch is obtained, a complete system of its fundamental solutions is determined, a transc...

Full description

Bibliographic Details
Main Authors: Surianinov Mykola, Krutii Yurii, Kovrov Anatolii, Osadchiy Vladimir
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/71/e3sconf_jessd2020_02022.pdf
_version_ 1819182433485979648
author Surianinov Mykola
Krutii Yurii
Kovrov Anatolii
Osadchiy Vladimir
author_facet Surianinov Mykola
Krutii Yurii
Kovrov Anatolii
Osadchiy Vladimir
author_sort Surianinov Mykola
collection DOAJ
description The work is devoted to determining the natural frequencies and vibration modes of a circular arch using the numerical-analytical boundary elements method. A differential equation of the natural vibrations of the arch is obtained, a complete system of its fundamental solutions is determined, a transcendental frequency equation is constructed, the arch is calculated based on the obtained analytical dependencies, and the results are compared with the results of finite element analysis. For 10 possible combinations of the roots of the equation of the characteristic equation, 360 fundamental functions are calculated. An example of calculating a circular arch for free vibrations by the method of the authors is considered. The search for the roots of the transcendental frequency equation can be carried out by the method of successive approximations, using any programming environment. Here used MATLAB. As a result of the calculation, the first five frequencies of the natural vibrations of the arch were obtained. Their comparison with those calculated in the ANSYS program shows that the spectrum of natural frequencies calculated by the boundary element method is slightly lower (except for the first frequency) than the spectrum calculated by the finite element method, which indicates greater reliability of the results of the boundary element method.
first_indexed 2024-12-22T22:46:03Z
format Article
id doaj.art-ad691f85acb24f0c8518aee3a4059f3d
institution Directory Open Access Journal
issn 2267-1242
language English
last_indexed 2024-12-22T22:46:03Z
publishDate 2020-01-01
publisher EDP Sciences
record_format Article
series E3S Web of Conferences
spelling doaj.art-ad691f85acb24f0c8518aee3a4059f3d2022-12-21T18:10:06ZengEDP SciencesE3S Web of Conferences2267-12422020-01-012110202210.1051/e3sconf/202021102022e3sconf_jessd2020_02022The solution of the problem of free circulation of circular arcs by numerical analytical boundary elements methodSurianinov Mykola0Krutii Yurii1Kovrov Anatolii2Osadchiy Vladimir3Odessa State Academy of Civil Engineering and ArchitectureOdessa State Academy of Civil Engineering and ArchitectureOdessa State Academy of Civil Engineering and ArchitectureOdessa State Academy of Civil Engineering and ArchitectureThe work is devoted to determining the natural frequencies and vibration modes of a circular arch using the numerical-analytical boundary elements method. A differential equation of the natural vibrations of the arch is obtained, a complete system of its fundamental solutions is determined, a transcendental frequency equation is constructed, the arch is calculated based on the obtained analytical dependencies, and the results are compared with the results of finite element analysis. For 10 possible combinations of the roots of the equation of the characteristic equation, 360 fundamental functions are calculated. An example of calculating a circular arch for free vibrations by the method of the authors is considered. The search for the roots of the transcendental frequency equation can be carried out by the method of successive approximations, using any programming environment. Here used MATLAB. As a result of the calculation, the first five frequencies of the natural vibrations of the arch were obtained. Their comparison with those calculated in the ANSYS program shows that the spectrum of natural frequencies calculated by the boundary element method is slightly lower (except for the first frequency) than the spectrum calculated by the finite element method, which indicates greater reliability of the results of the boundary element method.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/71/e3sconf_jessd2020_02022.pdf
spellingShingle Surianinov Mykola
Krutii Yurii
Kovrov Anatolii
Osadchiy Vladimir
The solution of the problem of free circulation of circular arcs by numerical analytical boundary elements method
E3S Web of Conferences
title The solution of the problem of free circulation of circular arcs by numerical analytical boundary elements method
title_full The solution of the problem of free circulation of circular arcs by numerical analytical boundary elements method
title_fullStr The solution of the problem of free circulation of circular arcs by numerical analytical boundary elements method
title_full_unstemmed The solution of the problem of free circulation of circular arcs by numerical analytical boundary elements method
title_short The solution of the problem of free circulation of circular arcs by numerical analytical boundary elements method
title_sort solution of the problem of free circulation of circular arcs by numerical analytical boundary elements method
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/71/e3sconf_jessd2020_02022.pdf
work_keys_str_mv AT surianinovmykola thesolutionoftheproblemoffreecirculationofcirculararcsbynumericalanalyticalboundaryelementsmethod
AT krutiiyurii thesolutionoftheproblemoffreecirculationofcirculararcsbynumericalanalyticalboundaryelementsmethod
AT kovrovanatolii thesolutionoftheproblemoffreecirculationofcirculararcsbynumericalanalyticalboundaryelementsmethod
AT osadchiyvladimir thesolutionoftheproblemoffreecirculationofcirculararcsbynumericalanalyticalboundaryelementsmethod
AT surianinovmykola solutionoftheproblemoffreecirculationofcirculararcsbynumericalanalyticalboundaryelementsmethod
AT krutiiyurii solutionoftheproblemoffreecirculationofcirculararcsbynumericalanalyticalboundaryelementsmethod
AT kovrovanatolii solutionoftheproblemoffreecirculationofcirculararcsbynumericalanalyticalboundaryelementsmethod
AT osadchiyvladimir solutionoftheproblemoffreecirculationofcirculararcsbynumericalanalyticalboundaryelementsmethod