An investigation about effects of fluid-structure-soil interaction on response modification coefficient of elevated concrete tanks
This paper aims to observe effects of fluid-structure-soil interactions on the response modification coefficient of elevated concrete tanks with frame and shaft supporting systems. Because of weaknesses and failures of elevated tanks that have been reported in recent earthquakes and importance of o...
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Vilnius Gediminas Technical University
2016-04-01
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doaj-24f01d48293c486fb823bc4c216d82ca2021-07-02T11:01:17ZengVilnius Gediminas Technical UniversityEngineering Structures and Technologies2029-882X2029-88382016-04-018110.3846/2029882X.2016.1157766An investigation about effects of fluid-structure-soil interaction on response modification coefficient of elevated concrete tanksMirtaha Hashemi0Khosrow Bargi1University of Tehran, Tehran, Iran (the Islamic Republic of)University of Tehran, Tehran, Iran (the Islamic Republic of) This paper aims to observe effects of fluid-structure-soil interactions on the response modification coefficient of elevated concrete tanks with frame and shaft supporting systems. Because of weaknesses and failures of elevated tanks that have been reported in recent earthquakes and importance of optimum and resistant design and also better seismic performance of these structures, it is essential to investigate on the response modification coefficient of elevated concrete tanks. In this paper, the response modification coefficient has been evaluated by using the numerical modeling. The method of research is a case study. The models have been subjected to an ensemble of important earthquake ground motions. The effects of soilstructure interactions and fluid-structure interactions on seismic behavior of the elevated concrete tanks have been modeled by the equivalent springs and Housner’s method, respectively. Dynamic response of the elevated tanks has been considered by using the nonlinear time history analysis and the discrete plastic hinge approach. Finally, the effects of fluid-structure-soil interactions on the response modification coefficient of the elevated concrete tanks have been discussed by considering results of the analyses. It has been concluded that the codes may underestimate base seismic forces for some seismic regions and some subsoil classes. https://journals.vgtu.lt/index.php/EST/article/view/2518elevated concrete tanksfluid-structure-soil interactionresponse modification coefficientearthquake ground motionnonlinear time history analysisdiscrete plastic hinge |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Mirtaha Hashemi Khosrow Bargi |
spellingShingle |
Mirtaha Hashemi Khosrow Bargi An investigation about effects of fluid-structure-soil interaction on response modification coefficient of elevated concrete tanks Engineering Structures and Technologies elevated concrete tanks fluid-structure-soil interaction response modification coefficient earthquake ground motion nonlinear time history analysis discrete plastic hinge |
author_facet |
Mirtaha Hashemi Khosrow Bargi |
author_sort |
Mirtaha Hashemi |
title |
An investigation about effects of fluid-structure-soil interaction on response modification coefficient of elevated concrete tanks |
title_short |
An investigation about effects of fluid-structure-soil interaction on response modification coefficient of elevated concrete tanks |
title_full |
An investigation about effects of fluid-structure-soil interaction on response modification coefficient of elevated concrete tanks |
title_fullStr |
An investigation about effects of fluid-structure-soil interaction on response modification coefficient of elevated concrete tanks |
title_full_unstemmed |
An investigation about effects of fluid-structure-soil interaction on response modification coefficient of elevated concrete tanks |
title_sort |
investigation about effects of fluid-structure-soil interaction on response modification coefficient of elevated concrete tanks |
publisher |
Vilnius Gediminas Technical University |
series |
Engineering Structures and Technologies |
issn |
2029-882X 2029-8838 |
publishDate |
2016-04-01 |
description |
This paper aims to observe effects of fluid-structure-soil interactions on the response modification coefficient of elevated concrete tanks with frame and shaft supporting systems. Because of weaknesses and failures of elevated tanks that have been reported in recent earthquakes and importance of optimum and resistant design and also better seismic performance of these structures, it is essential to investigate on the response modification coefficient of elevated concrete tanks. In this paper, the response modification coefficient has been evaluated by using the numerical modeling. The method of research is a case study. The models have been subjected to an ensemble of important earthquake ground motions. The effects of soilstructure interactions and fluid-structure interactions on seismic behavior of the elevated concrete tanks have been modeled by the equivalent springs and Housner’s method, respectively. Dynamic response of the elevated tanks has been considered by using the nonlinear time history analysis and the discrete plastic hinge approach. Finally, the effects of fluid-structure-soil interactions on the response modification coefficient of the elevated concrete tanks have been discussed by considering results of the analyses. It has been concluded that the codes may underestimate base seismic forces for some seismic regions and some subsoil classes.
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topic |
elevated concrete tanks fluid-structure-soil interaction response modification coefficient earthquake ground motion nonlinear time history analysis discrete plastic hinge |
url |
https://journals.vgtu.lt/index.php/EST/article/view/2518 |
work_keys_str_mv |
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