Dynamic Behavior Improvement of Adjacent Buildings Using Fluid Viscous Dampers

Nowadays, the use of control systems in buildings has been increased and the importance of vibration reduction of structures is considered more than ever. In addition to improve the dynamic behavior of buildings, control systems can be installed between adjacent buildings as activated, semi-active a...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Ashkan KhodaBandehLou, Solmaz Yaghobzadeh, Reza Shokri Soltan Abadi
Formato: article
Lenguaje:FA
Publicado: Iranian Society of Structrual Engineering (ISSE) 2021
Materias:
Acceso en línea:https://doaj.org/article/79e61ac22db8447e8fd2a71d54f67a04
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:79e61ac22db8447e8fd2a71d54f67a04
record_format dspace
spelling oai:doaj.org-article:79e61ac22db8447e8fd2a71d54f67a042021-11-08T15:53:27ZDynamic Behavior Improvement of Adjacent Buildings Using Fluid Viscous Dampers2476-39772538-261610.22065/jsce.2018.136821.1596https://doaj.org/article/79e61ac22db8447e8fd2a71d54f67a042021-01-01T00:00:00Zhttps://www.jsce.ir/article_77133_7d2fb85d6f29542a1eb22ab4c82da2db.pdfhttps://doaj.org/toc/2476-3977https://doaj.org/toc/2538-2616Nowadays, the use of control systems in buildings has been increased and the importance of vibration reduction of structures is considered more than ever. In addition to improve the dynamic behavior of buildings, control systems can be installed between adjacent buildings as activated, semi-active and inactivated systems. Fluid viscous dampers are one of the most important approaches for inactivated control systems in which the dynamic response of two adjacent buildings reduces according to the high resistance of the viscous fluid. The main purpose of this study is the use of control systems in two similar adjacent buildings to reduce the entire system response which will be the analytical study of the impact of viscous dampers to control system performance. In order to provide the analysis and to study the dynamic behavior improvement of different adjacent buildings connected with dampers, two models of the original sample was investigated. All examples are different from each other and response analysis and time history was provided using SAP 2000 software. According to the acquired results, the effect of fluid viscous dampers for tall buildings is less than the shorter ones. Moreover, these dampers are more efficiently working for adjacent buildings with different heights rather than buildings with the same height.Ashkan KhodaBandehLouSolmaz YaghobzadehReza Shokri Soltan AbadiIranian Society of Structrual Engineering (ISSE)articledynamic behavioradjacent buildingsviscous damperspassive controlseismic analysisBridge engineeringTG1-470Building constructionTH1-9745FAJournal of Structural and Construction Engineering, Vol 7, Iss 4, Pp 129-147 (2021)
institution DOAJ
collection DOAJ
language FA
topic dynamic behavior
adjacent buildings
viscous dampers
passive control
seismic analysis
Bridge engineering
TG1-470
Building construction
TH1-9745
spellingShingle dynamic behavior
adjacent buildings
viscous dampers
passive control
seismic analysis
Bridge engineering
TG1-470
Building construction
TH1-9745
Ashkan KhodaBandehLou
Solmaz Yaghobzadeh
Reza Shokri Soltan Abadi
Dynamic Behavior Improvement of Adjacent Buildings Using Fluid Viscous Dampers
description Nowadays, the use of control systems in buildings has been increased and the importance of vibration reduction of structures is considered more than ever. In addition to improve the dynamic behavior of buildings, control systems can be installed between adjacent buildings as activated, semi-active and inactivated systems. Fluid viscous dampers are one of the most important approaches for inactivated control systems in which the dynamic response of two adjacent buildings reduces according to the high resistance of the viscous fluid. The main purpose of this study is the use of control systems in two similar adjacent buildings to reduce the entire system response which will be the analytical study of the impact of viscous dampers to control system performance. In order to provide the analysis and to study the dynamic behavior improvement of different adjacent buildings connected with dampers, two models of the original sample was investigated. All examples are different from each other and response analysis and time history was provided using SAP 2000 software. According to the acquired results, the effect of fluid viscous dampers for tall buildings is less than the shorter ones. Moreover, these dampers are more efficiently working for adjacent buildings with different heights rather than buildings with the same height.
format article
author Ashkan KhodaBandehLou
Solmaz Yaghobzadeh
Reza Shokri Soltan Abadi
author_facet Ashkan KhodaBandehLou
Solmaz Yaghobzadeh
Reza Shokri Soltan Abadi
author_sort Ashkan KhodaBandehLou
title Dynamic Behavior Improvement of Adjacent Buildings Using Fluid Viscous Dampers
title_short Dynamic Behavior Improvement of Adjacent Buildings Using Fluid Viscous Dampers
title_full Dynamic Behavior Improvement of Adjacent Buildings Using Fluid Viscous Dampers
title_fullStr Dynamic Behavior Improvement of Adjacent Buildings Using Fluid Viscous Dampers
title_full_unstemmed Dynamic Behavior Improvement of Adjacent Buildings Using Fluid Viscous Dampers
title_sort dynamic behavior improvement of adjacent buildings using fluid viscous dampers
publisher Iranian Society of Structrual Engineering (ISSE)
publishDate 2021
url https://doaj.org/article/79e61ac22db8447e8fd2a71d54f67a04
work_keys_str_mv AT ashkankhodabandehlou dynamicbehaviorimprovementofadjacentbuildingsusingfluidviscousdampers
AT solmazyaghobzadeh dynamicbehaviorimprovementofadjacentbuildingsusingfluidviscousdampers
AT rezashokrisoltanabadi dynamicbehaviorimprovementofadjacentbuildingsusingfluidviscousdampers
_version_ 1718441577144123392