Dynamic reduction in the calculation of bridge structures

In modern bridge construction, on the one hand, there are increasing trends towards increasing bridge spans, which requires reducing the weight of structures. On the other hand, the use of structural elements made of various composite materials is expanding, which allows to significantly reduce the...

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Main Authors: Makarov Aleksander, Kalinovsky Sergey, Ermilova Natalia
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/39/e3sconf_form2021_03002.pdf
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spelling doaj-a747f7f6f0d54c1b8367d281e10cc0c92021-06-11T07:15:45ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012630300210.1051/e3sconf/202126303002e3sconf_form2021_03002Dynamic reduction in the calculation of bridge structuresMakarov Aleksander0Kalinovsky Sergey1Ermilova Natalia2Volgograd State Technical University, Construction and operation of transport facilities DepartmentVolgograd State Technical University, Hydraulic and earth structures DepartmentVolgograd State Technical University, Engineering Graphics, Standardization and MetrologyIn modern bridge construction, on the one hand, there are increasing trends towards increasing bridge spans, which requires reducing the weight of structures. On the other hand, the use of structural elements made of various composite materials is expanding, which allows to significantly reduce the weight of the bridge structures as a whole. However, the creation of new forms of span structures of bridges requires more detailed calculations in order to optimize such forms, in particular the role of calculating the dynamic impact, because with increasing spans and weight loss, increases design flexibility and sensitivity to dynamic loads. In the present paper, the problems of solving an incomplete algebraic problem of eigenvalues and eigenvectors are considered. To increase the accuracy of the calculation and exclude the use of high-order matrices, a method of sequential reduction of the stiffness and equivalent mass matrices is proposed. The method is based on the construction of partial systems using a static transformation, followed by the solution of its own problem for the partial system. In the process of solving this problem through the eigenvectors of the system, the minor unknowns are reduced to the main ones. Dynamic reduction showed high calculation accuracy..https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/39/e3sconf_form2021_03002.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Makarov Aleksander
Kalinovsky Sergey
Ermilova Natalia
spellingShingle Makarov Aleksander
Kalinovsky Sergey
Ermilova Natalia
Dynamic reduction in the calculation of bridge structures
E3S Web of Conferences
author_facet Makarov Aleksander
Kalinovsky Sergey
Ermilova Natalia
author_sort Makarov Aleksander
title Dynamic reduction in the calculation of bridge structures
title_short Dynamic reduction in the calculation of bridge structures
title_full Dynamic reduction in the calculation of bridge structures
title_fullStr Dynamic reduction in the calculation of bridge structures
title_full_unstemmed Dynamic reduction in the calculation of bridge structures
title_sort dynamic reduction in the calculation of bridge structures
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description In modern bridge construction, on the one hand, there are increasing trends towards increasing bridge spans, which requires reducing the weight of structures. On the other hand, the use of structural elements made of various composite materials is expanding, which allows to significantly reduce the weight of the bridge structures as a whole. However, the creation of new forms of span structures of bridges requires more detailed calculations in order to optimize such forms, in particular the role of calculating the dynamic impact, because with increasing spans and weight loss, increases design flexibility and sensitivity to dynamic loads. In the present paper, the problems of solving an incomplete algebraic problem of eigenvalues and eigenvectors are considered. To increase the accuracy of the calculation and exclude the use of high-order matrices, a method of sequential reduction of the stiffness and equivalent mass matrices is proposed. The method is based on the construction of partial systems using a static transformation, followed by the solution of its own problem for the partial system. In the process of solving this problem through the eigenvectors of the system, the minor unknowns are reduced to the main ones. Dynamic reduction showed high calculation accuracy..
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/39/e3sconf_form2021_03002.pdf
work_keys_str_mv AT makarovaleksander dynamicreductioninthecalculationofbridgestructures
AT kalinovskysergey dynamicreductioninthecalculationofbridgestructures
AT ermilovanatalia dynamicreductioninthecalculationofbridgestructures
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