Numerical Modeling of Masonry Infilled Reinforced Concrete Building during Construction Stages Using ABAQUS Software
The effects of seismic actions on reinforced concrete (RC) structures are strongly influenced by the dynamic behavior of their materials. It is crucial to find a simple definition of the natural frequencies of reinforced concrete buildings, particularly in relation to both principal and secondary el...
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doaj-7d9d47c592bb4fe096c5041ae6a6f69d2020-11-24T21:34:30ZengMDPI AGBuildings2075-53092019-08-019818110.3390/buildings9080181buildings9080181Numerical Modeling of Masonry Infilled Reinforced Concrete Building during Construction Stages Using ABAQUS SoftwareBoudjamaa Roudane0Süleyman Adanur1Ahmet Can Altunışık2Department of Civil Engineering, Karadeniz Technical University, 61080 Trabzon, TurkeyDepartment of Civil Engineering, Karadeniz Technical University, 61080 Trabzon, TurkeyDepartment of Civil Engineering, Karadeniz Technical University, 61080 Trabzon, TurkeyThe effects of seismic actions on reinforced concrete (RC) structures are strongly influenced by the dynamic behavior of their materials. It is crucial to find a simple definition of the natural frequencies of reinforced concrete buildings, particularly in relation to both principal and secondary elements constructing the reinforced concrete building type. This paper firstly presents a comparison with the ambient vibration surveys. An analysis model of different stages of construction of the reinforced concrete masonry wall was compared using the finite element software. In the second step, structural responses of the model were investigated by means of static analysis. Three main types were examined: Bare frame for one, two and three storeys; brick-walled; and coated cases. Modal analysis is carried out by ABAQUS software starting from the deformed building, to provide the natural frequencies and mode shapes. For the natural frequencies, a good agreement is obtained between analytical and experimental results. Furthermore, the comparison results between different cases show that the application of the plaster work increases the lateral stiffness and has significant effects on the dynamic response of the buildings.https://www.mdpi.com/2075-5309/9/8/181ABAQUS softwareconstruction stagesdynamic characteristicsreinforced concrete buildingplaster work |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Boudjamaa Roudane Süleyman Adanur Ahmet Can Altunışık |
spellingShingle |
Boudjamaa Roudane Süleyman Adanur Ahmet Can Altunışık Numerical Modeling of Masonry Infilled Reinforced Concrete Building during Construction Stages Using ABAQUS Software Buildings ABAQUS software construction stages dynamic characteristics reinforced concrete building plaster work |
author_facet |
Boudjamaa Roudane Süleyman Adanur Ahmet Can Altunışık |
author_sort |
Boudjamaa Roudane |
title |
Numerical Modeling of Masonry Infilled Reinforced Concrete Building during Construction Stages Using ABAQUS Software |
title_short |
Numerical Modeling of Masonry Infilled Reinforced Concrete Building during Construction Stages Using ABAQUS Software |
title_full |
Numerical Modeling of Masonry Infilled Reinforced Concrete Building during Construction Stages Using ABAQUS Software |
title_fullStr |
Numerical Modeling of Masonry Infilled Reinforced Concrete Building during Construction Stages Using ABAQUS Software |
title_full_unstemmed |
Numerical Modeling of Masonry Infilled Reinforced Concrete Building during Construction Stages Using ABAQUS Software |
title_sort |
numerical modeling of masonry infilled reinforced concrete building during construction stages using abaqus software |
publisher |
MDPI AG |
series |
Buildings |
issn |
2075-5309 |
publishDate |
2019-08-01 |
description |
The effects of seismic actions on reinforced concrete (RC) structures are strongly influenced by the dynamic behavior of their materials. It is crucial to find a simple definition of the natural frequencies of reinforced concrete buildings, particularly in relation to both principal and secondary elements constructing the reinforced concrete building type. This paper firstly presents a comparison with the ambient vibration surveys. An analysis model of different stages of construction of the reinforced concrete masonry wall was compared using the finite element software. In the second step, structural responses of the model were investigated by means of static analysis. Three main types were examined: Bare frame for one, two and three storeys; brick-walled; and coated cases. Modal analysis is carried out by ABAQUS software starting from the deformed building, to provide the natural frequencies and mode shapes. For the natural frequencies, a good agreement is obtained between analytical and experimental results. Furthermore, the comparison results between different cases show that the application of the plaster work increases the lateral stiffness and has significant effects on the dynamic response of the buildings. |
topic |
ABAQUS software construction stages dynamic characteristics reinforced concrete building plaster work |
url |
https://www.mdpi.com/2075-5309/9/8/181 |
work_keys_str_mv |
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