Energy modeling method as applied to diffraction of stationary plane elastic waves

<p>The energy method uses reciprocity works theorem and transformation of occurring hypersingular integrals for a system of equations consisting of singular integral equations of the first and second kind. Algorithms for the numerical solution are obtained by the method of discrete singulariti...

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Main Authors: Александр Максимович Назаренко, Виктор Олегович Мищенко
Format: Article
Language:English
Published: PC Technology Center 2016-05-01
Series:ScienceRise
Subjects:
Online Access:http://journals.uran.ua/sciencerise/article/view/69828
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spelling doaj-f7e27b02d6054f1f90a9f99c2a7a51342020-11-25T02:35:54ZengPC Technology CenterScienceRise2313-62862313-84162016-05-0152 (22)394710.15587/2313-8416.2016.6982865815Energy modeling method as applied to diffraction of stationary plane elastic wavesАлександр Максимович Назаренко0Виктор Олегович Мищенко1Sumy State University 2 Rimsky-Korsakov str., Sumy, Ukraine, 40007V. N. Karazin Kharkiv National University 4 Svobody squ., Kharkov, Ukraine, 61022<p>The energy method uses reciprocity works theorem and transformation of occurring hypersingular integrals for a system of equations consisting of singular integral equations of the first and second kind. Algorithms for the numerical solution are obtained by the method of discrete singularities. Precision of calculations is controlled due to algorithmic diversity. Application to the numerical modeling of diffraction of stationary plane waves on finite and periodic systems of different inhomogeneities is shown</p>http://journals.uran.ua/sciencerise/article/view/69828diffraction of elastic wavesinhomogeneitiesenergy modeling methodplane strainstresses
collection DOAJ
language English
format Article
sources DOAJ
author Александр Максимович Назаренко
Виктор Олегович Мищенко
spellingShingle Александр Максимович Назаренко
Виктор Олегович Мищенко
Energy modeling method as applied to diffraction of stationary plane elastic waves
ScienceRise
diffraction of elastic waves
inhomogeneities
energy modeling method
plane strain
stresses
author_facet Александр Максимович Назаренко
Виктор Олегович Мищенко
author_sort Александр Максимович Назаренко
title Energy modeling method as applied to diffraction of stationary plane elastic waves
title_short Energy modeling method as applied to diffraction of stationary plane elastic waves
title_full Energy modeling method as applied to diffraction of stationary plane elastic waves
title_fullStr Energy modeling method as applied to diffraction of stationary plane elastic waves
title_full_unstemmed Energy modeling method as applied to diffraction of stationary plane elastic waves
title_sort energy modeling method as applied to diffraction of stationary plane elastic waves
publisher PC Technology Center
series ScienceRise
issn 2313-6286
2313-8416
publishDate 2016-05-01
description <p>The energy method uses reciprocity works theorem and transformation of occurring hypersingular integrals for a system of equations consisting of singular integral equations of the first and second kind. Algorithms for the numerical solution are obtained by the method of discrete singularities. Precision of calculations is controlled due to algorithmic diversity. Application to the numerical modeling of diffraction of stationary plane waves on finite and periodic systems of different inhomogeneities is shown</p>
topic diffraction of elastic waves
inhomogeneities
energy modeling method
plane strain
stresses
url http://journals.uran.ua/sciencerise/article/view/69828
work_keys_str_mv AT aleksandrmaksimovičnazarenko energymodelingmethodasappliedtodiffractionofstationaryplaneelasticwaves
AT viktorolegovičmiŝenko energymodelingmethodasappliedtodiffractionofstationaryplaneelasticwaves
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