Investigation of Soil-Structure Interaction for Design of Reinforced Concrete Structures under Earthquake Load

One of the most common natural disasters in our country is earthquakes with strong ground motion. Earthquake damages structures with the impact of ground shaking. Prediction of earthquake magnitude in advance is a great importance in the civil engineering discipline to minimize possible damages duri...

Full description

Bibliographic Details
Main Authors: Saffet Kılıçer, Korhan Özgan
Format: Article
Language:English
Published: Artvin Corun University 2018-01-01
Series:Doğal Afetler ve Çevre Dergisi
Subjects:
Online Access:http://dacd.artvin.edu.tr/tr/download/article-file/413982
id doaj-bcaeb84f8e774f6eaf924e74fd7635de
record_format Article
spelling doaj-bcaeb84f8e774f6eaf924e74fd7635de2020-11-25T01:46:19ZengArtvin Corun UniversityDoğal Afetler ve Çevre Dergisi2528-96402528-96402018-01-014111010.21324/dacd.342462Investigation of Soil-Structure Interaction for Design of Reinforced Concrete Structures under Earthquake LoadSaffet Kılıçer0Korhan Özgan1Artvin Çoruh Üniversitesi, Mühendislik Fakültesi, Çevre Mühendisliği Bölümü, 08100, Artvin.Karadeniz Teknik Üniversitesi, Mühendislik Fakültesi, İnşaat Mühendisliği Bölümü, 61080, Trabzon.One of the most common natural disasters in our country is earthquakes with strong ground motion. Earthquake damages structures with the impact of ground shaking. Prediction of earthquake magnitude in advance is a great importance in the civil engineering discipline to minimize possible damages during the earthquake. Therefore, understanding of structural behavior correctly is as important as the estimation of the possible earthquake magnitude. For this reason, structures should be modeled accurately and realistically. Reinforced concrete structures are usually designed using commercial software defined either as rigid or with elastic springs at the base. In this study, considering the earthquake recording of 1999 Kocaeli, a 12-storey reinforced concrete structure was analyzed with rigid foundation assumption, Winkler and Modified Vlasov models. An interface was coded in MATLAB to exchange data between SAP2000 and MATLAB. Thanks to the interface, SAP2000 has gained the ability of performing analyses with modified Vlasov model. In this way, periods, base shear forces, column axial forces, column bending moments and lateral displacements of the structures were compared for each subsoil model. At the end of the study, it is observed that the effect of subsoil on the structural behavior is an indispensable design factor for the reinforced concrete structures.http://dacd.artvin.edu.tr/tr/download/article-file/413982soil-structure interactionearthquakemodified vlasov modeldesign of reinforced concrete structuressap2000oapi
collection DOAJ
language English
format Article
sources DOAJ
author Saffet Kılıçer
Korhan Özgan
spellingShingle Saffet Kılıçer
Korhan Özgan
Investigation of Soil-Structure Interaction for Design of Reinforced Concrete Structures under Earthquake Load
Doğal Afetler ve Çevre Dergisi
soil-structure interaction
earthquake
modified vlasov model
design of reinforced concrete structures
sap2000
oapi
author_facet Saffet Kılıçer
Korhan Özgan
author_sort Saffet Kılıçer
title Investigation of Soil-Structure Interaction for Design of Reinforced Concrete Structures under Earthquake Load
title_short Investigation of Soil-Structure Interaction for Design of Reinforced Concrete Structures under Earthquake Load
title_full Investigation of Soil-Structure Interaction for Design of Reinforced Concrete Structures under Earthquake Load
title_fullStr Investigation of Soil-Structure Interaction for Design of Reinforced Concrete Structures under Earthquake Load
title_full_unstemmed Investigation of Soil-Structure Interaction for Design of Reinforced Concrete Structures under Earthquake Load
title_sort investigation of soil-structure interaction for design of reinforced concrete structures under earthquake load
publisher Artvin Corun University
series Doğal Afetler ve Çevre Dergisi
issn 2528-9640
2528-9640
publishDate 2018-01-01
description One of the most common natural disasters in our country is earthquakes with strong ground motion. Earthquake damages structures with the impact of ground shaking. Prediction of earthquake magnitude in advance is a great importance in the civil engineering discipline to minimize possible damages during the earthquake. Therefore, understanding of structural behavior correctly is as important as the estimation of the possible earthquake magnitude. For this reason, structures should be modeled accurately and realistically. Reinforced concrete structures are usually designed using commercial software defined either as rigid or with elastic springs at the base. In this study, considering the earthquake recording of 1999 Kocaeli, a 12-storey reinforced concrete structure was analyzed with rigid foundation assumption, Winkler and Modified Vlasov models. An interface was coded in MATLAB to exchange data between SAP2000 and MATLAB. Thanks to the interface, SAP2000 has gained the ability of performing analyses with modified Vlasov model. In this way, periods, base shear forces, column axial forces, column bending moments and lateral displacements of the structures were compared for each subsoil model. At the end of the study, it is observed that the effect of subsoil on the structural behavior is an indispensable design factor for the reinforced concrete structures.
topic soil-structure interaction
earthquake
modified vlasov model
design of reinforced concrete structures
sap2000
oapi
url http://dacd.artvin.edu.tr/tr/download/article-file/413982
work_keys_str_mv AT saffetkılıcer investigationofsoilstructureinteractionfordesignofreinforcedconcretestructuresunderearthquakeload
AT korhanozgan investigationofsoilstructureinteractionfordesignofreinforcedconcretestructuresunderearthquakeload
_version_ 1725020354795012096