Application of multilayer finite elements of variable thickness in the calculation of reinforced concrete slabs in the "Prince" computer complex
Objective. A family of multilayer finite elements designed for calculating reinforced concrete slabs and shells of variable thickness is described. The features of the formation of stiffness matrices associated with the variability of the cross-section of elements are considered.Methods. The family...
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Daghestan State Technical University
2021-01-01
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Online Access: | https://vestnik.dgtu.ru/jour/article/view/882 |
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doaj-c4a3ffe2207d42fbaa7d8bcae2fb4d992021-07-28T20:54:38ZrusDaghestan State Technical UniversityVestnik Dagestanskogo Gosudarstvennogo Tehničeskogo Universiteta: Tehničeskie Nauki 2073-61852542-095X2021-01-0147411212110.21822/2073-6185-2020-47-4-112-121611Application of multilayer finite elements of variable thickness in the calculation of reinforced concrete slabs in the "Prince" computer complexK. R. Aidemirov0V. P. Agapov1G. M. Murtazaliev2Daghestan State Technical UniversityNational Research Moscow State University of Civil EngineeringDaghestan State Technical UniversityObjective. A family of multilayer finite elements designed for calculating reinforced concrete slabs and shells of variable thickness is described. The features of the formation of stiffness matrices associated with the variability of the cross-section of elements are considered.Methods. The family is based on the simplest planar triangular element constructed using the Kirchhoff hypothesis. The transverse displacements in this element are approximated by an incomplete cubic polynomial. This element is not suitable for practical use, but it is based on improved elements of three- and foursided shape in the plan. Special attention is paid to the consideration of cross-section variability.Results. The results of testing the developed elements are presented and the advantages of their use in the practice of design and calculation of structures are shown.Conclusion. The developed PRINCE software package can be useful in the design and calculation of structures containing plates of variable thicknesses.https://vestnik.dgtu.ru/jour/article/view/882building structuresreinforced concrete slabs of constant and variable crosssectionfinite element method |
collection |
DOAJ |
language |
Russian |
format |
Article |
sources |
DOAJ |
author |
K. R. Aidemirov V. P. Agapov G. M. Murtazaliev |
spellingShingle |
K. R. Aidemirov V. P. Agapov G. M. Murtazaliev Application of multilayer finite elements of variable thickness in the calculation of reinforced concrete slabs in the "Prince" computer complex Vestnik Dagestanskogo Gosudarstvennogo Tehničeskogo Universiteta: Tehničeskie Nauki building structures reinforced concrete slabs of constant and variable crosssection finite element method |
author_facet |
K. R. Aidemirov V. P. Agapov G. M. Murtazaliev |
author_sort |
K. R. Aidemirov |
title |
Application of multilayer finite elements of variable thickness in the calculation of reinforced concrete slabs in the "Prince" computer complex |
title_short |
Application of multilayer finite elements of variable thickness in the calculation of reinforced concrete slabs in the "Prince" computer complex |
title_full |
Application of multilayer finite elements of variable thickness in the calculation of reinforced concrete slabs in the "Prince" computer complex |
title_fullStr |
Application of multilayer finite elements of variable thickness in the calculation of reinforced concrete slabs in the "Prince" computer complex |
title_full_unstemmed |
Application of multilayer finite elements of variable thickness in the calculation of reinforced concrete slabs in the "Prince" computer complex |
title_sort |
application of multilayer finite elements of variable thickness in the calculation of reinforced concrete slabs in the "prince" computer complex |
publisher |
Daghestan State Technical University |
series |
Vestnik Dagestanskogo Gosudarstvennogo Tehničeskogo Universiteta: Tehničeskie Nauki |
issn |
2073-6185 2542-095X |
publishDate |
2021-01-01 |
description |
Objective. A family of multilayer finite elements designed for calculating reinforced concrete slabs and shells of variable thickness is described. The features of the formation of stiffness matrices associated with the variability of the cross-section of elements are considered.Methods. The family is based on the simplest planar triangular element constructed using the Kirchhoff hypothesis. The transverse displacements in this element are approximated by an incomplete cubic polynomial. This element is not suitable for practical use, but it is based on improved elements of three- and foursided shape in the plan. Special attention is paid to the consideration of cross-section variability.Results. The results of testing the developed elements are presented and the advantages of their use in the practice of design and calculation of structures are shown.Conclusion. The developed PRINCE software package can be useful in the design and calculation of structures containing plates of variable thicknesses. |
topic |
building structures reinforced concrete slabs of constant and variable crosssection finite element method |
url |
https://vestnik.dgtu.ru/jour/article/view/882 |
work_keys_str_mv |
AT kraidemirov applicationofmultilayerfiniteelementsofvariablethicknessinthecalculationofreinforcedconcreteslabsintheprincecomputercomplex AT vpagapov applicationofmultilayerfiniteelementsofvariablethicknessinthecalculationofreinforcedconcreteslabsintheprincecomputercomplex AT gmmurtazaliev applicationofmultilayerfiniteelementsofvariablethicknessinthecalculationofreinforcedconcreteslabsintheprincecomputercomplex |
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