Displacement-based design of Reinforced Concrete Special Moment Frame (RC-SMF) with Vertical Irregularity

Reinforced concrete Special Moment Frame (RC-SMF) with irregularity in dimension experiences large inelastic deformation under ground motion. The building code for designing structural elements generally is focused on satisfying the strength and serviceability. On the other hand, the displacement-ba...

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Main Authors: Akhter A F M Salman, Arfiadi Yoyong
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201925805014
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spelling doaj-f914c780926d40b29791f2a1c99735ef2021-02-02T08:46:47ZengEDP SciencesMATEC Web of Conferences2261-236X2019-01-012580501410.1051/matecconf/201925805014matecconf_scescm2019_05014Displacement-based design of Reinforced Concrete Special Moment Frame (RC-SMF) with Vertical IrregularityAkhter A F M Salman0Arfiadi Yoyong1Department of Civil Engineering, Universitas Atma Jaya YogyakartaDepartment of Civil Engineering, Universitas Atma Jaya YogyakartaReinforced concrete Special Moment Frame (RC-SMF) with irregularity in dimension experiences large inelastic deformation under ground motion. The building code for designing structural elements generally is focused on satisfying the strength and serviceability. On the other hand, the displacement-based design (DBD) procedure is based on building performance level. This paper presents a devoted study of designing structural elements of 8 story RC-SMF with vertical irregularity using the DBD method. This method is mainly using energy-work balance concept with pre-selected yield mechanism and target drift. Moreover, a new lateral force distribution method is used in this study which accounts for inelastic dynamic response and higher mode effects. Strong column-weak beam mechanism is used to design beam and column, and beam moment capacity of each floor is calculated by equating external work to internal work approach. Furthermore, column design strength is taken as the combination of factored gravity loads and maximum expected strength of the beam. The time history analysis results show that story drift is below than the target drift and achieve the desired performance level. Moreover, the results also show lateral force distribution is very close to the lateral shear distribution which obtained from time history analysis.https://doi.org/10.1051/matecconf/201925805014
collection DOAJ
language English
format Article
sources DOAJ
author Akhter A F M Salman
Arfiadi Yoyong
spellingShingle Akhter A F M Salman
Arfiadi Yoyong
Displacement-based design of Reinforced Concrete Special Moment Frame (RC-SMF) with Vertical Irregularity
MATEC Web of Conferences
author_facet Akhter A F M Salman
Arfiadi Yoyong
author_sort Akhter A F M Salman
title Displacement-based design of Reinforced Concrete Special Moment Frame (RC-SMF) with Vertical Irregularity
title_short Displacement-based design of Reinforced Concrete Special Moment Frame (RC-SMF) with Vertical Irregularity
title_full Displacement-based design of Reinforced Concrete Special Moment Frame (RC-SMF) with Vertical Irregularity
title_fullStr Displacement-based design of Reinforced Concrete Special Moment Frame (RC-SMF) with Vertical Irregularity
title_full_unstemmed Displacement-based design of Reinforced Concrete Special Moment Frame (RC-SMF) with Vertical Irregularity
title_sort displacement-based design of reinforced concrete special moment frame (rc-smf) with vertical irregularity
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2019-01-01
description Reinforced concrete Special Moment Frame (RC-SMF) with irregularity in dimension experiences large inelastic deformation under ground motion. The building code for designing structural elements generally is focused on satisfying the strength and serviceability. On the other hand, the displacement-based design (DBD) procedure is based on building performance level. This paper presents a devoted study of designing structural elements of 8 story RC-SMF with vertical irregularity using the DBD method. This method is mainly using energy-work balance concept with pre-selected yield mechanism and target drift. Moreover, a new lateral force distribution method is used in this study which accounts for inelastic dynamic response and higher mode effects. Strong column-weak beam mechanism is used to design beam and column, and beam moment capacity of each floor is calculated by equating external work to internal work approach. Furthermore, column design strength is taken as the combination of factored gravity loads and maximum expected strength of the beam. The time history analysis results show that story drift is below than the target drift and achieve the desired performance level. Moreover, the results also show lateral force distribution is very close to the lateral shear distribution which obtained from time history analysis.
url https://doi.org/10.1051/matecconf/201925805014
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