Non-Linear Time History Analysis of Moment Frame Structure with Performance-Based Approach on Different Concrete Compressive Strengths

The non-linear time history analysis and Pushover analysis are performed on the two models of different compressive strengths but of the same element and component sizes by keeping the same reinforcement arrangement. The concrete strengths were 30Mpa and 40Mpa. The structure was first analysed based...

وصف كامل

محفوظ في:
التفاصيل البيبلوغرافية
المؤلف الرئيسي: ZAIDI, SYED HASSAAN AHMED (author)
منشور في: 2023
الوصول للمادة أونلاين:https://bspace.buid.ac.ae/handle/1234/3372
الوسوم: إضافة وسم
لا توجد وسوم, كن أول من يضع وسما على هذه التسجيلة!
_version_ 1862980618935074816
author ZAIDI, SYED HASSAAN AHMED
author_facet ZAIDI, SYED HASSAAN AHMED
author_role author
dc.contributor.none.fl_str_mv Dr Jhokio, Gul Ahmed
dc.creator.none.fl_str_mv ZAIDI, SYED HASSAAN AHMED
dc.date.none.fl_str_mv 2023-12
2026-01-10T11:56:59Z
dc.format.none.fl_str_mv application/pdf
dc.identifier.none.fl_str_mv 21002436
https://bspace.buid.ac.ae/handle/1234/3372
dc.language.none.fl_str_mv en
dc.publisher.none.fl_str_mv The British University in Dubai
dc.title.none.fl_str_mv Non-Linear Time History Analysis of Moment Frame Structure with Performance-Based Approach on Different Concrete Compressive Strengths
dc.type.none.fl_str_mv Dissertation
description The non-linear time history analysis and Pushover analysis are performed on the two models of different compressive strengths but of the same element and component sizes by keeping the same reinforcement arrangement. The concrete strengths were 30Mpa and 40Mpa. The structure was first analysed based on the linear model approach with the two compressive strengths 30Mpa and 40Mpa in SAP2000 by following the code ACI318. The two nonlinear model were then analysed in the Perform3D. For the modelling of the beams, the plastic hinge modelling approach was used. The modelling of the column was done on the fibre hinge modeling approach. The structure is 7 stories high, and it has a footprint of 50 x 50 m. Each bay is 5 meters. The nonlinear concrete model was constructed based on the Razvi (1992) confined mode. All of the seven earthquakes were scaled for the design response spectrum. The results show a trend in the better performance of 40Mpa structure over 30Mpa. The 30Mpa structure reaches the Immediate Occupancy level earlier than the 40 Mpa structure. The energy consumption patterns do not show any trend or similarity. Usage ratios were found significantly lower in the 40Mpa structure, especially at the Immediate Occupancy level in all of the seven earthquakes. The 40Mpa structure has predominantly less drifts the 30Mpa structure. Keywords: Performance Based Design, PBD, Perform3D, time history analysis, pushover analysis, nonlinear concrete, concrete compressive strength
id budr_e4cd9f4f567377d1fafd8405322add7c
identifier_str_mv 21002436
language_invalid_str_mv en
network_acronym_str budr
network_name_str The British University in Dubai repository
oai_identifier_str oai:bspace.buid.ac.ae:1234/3372
publishDate 2023
publisher.none.fl_str_mv The British University in Dubai
repository.mail.fl_str_mv
repository.name.fl_str_mv
repository_id_str
spelling Non-Linear Time History Analysis of Moment Frame Structure with Performance-Based Approach on Different Concrete Compressive StrengthsZAIDI, SYED HASSAAN AHMEDThe non-linear time history analysis and Pushover analysis are performed on the two models of different compressive strengths but of the same element and component sizes by keeping the same reinforcement arrangement. The concrete strengths were 30Mpa and 40Mpa. The structure was first analysed based on the linear model approach with the two compressive strengths 30Mpa and 40Mpa in SAP2000 by following the code ACI318. The two nonlinear model were then analysed in the Perform3D. For the modelling of the beams, the plastic hinge modelling approach was used. The modelling of the column was done on the fibre hinge modeling approach. The structure is 7 stories high, and it has a footprint of 50 x 50 m. Each bay is 5 meters. The nonlinear concrete model was constructed based on the Razvi (1992) confined mode. All of the seven earthquakes were scaled for the design response spectrum. The results show a trend in the better performance of 40Mpa structure over 30Mpa. The 30Mpa structure reaches the Immediate Occupancy level earlier than the 40 Mpa structure. The energy consumption patterns do not show any trend or similarity. Usage ratios were found significantly lower in the 40Mpa structure, especially at the Immediate Occupancy level in all of the seven earthquakes. The 40Mpa structure has predominantly less drifts the 30Mpa structure. Keywords: Performance Based Design, PBD, Perform3D, time history analysis, pushover analysis, nonlinear concrete, concrete compressive strengthThe British University in DubaiDr Jhokio, Gul Ahmed2026-01-10T11:56:59Z2023-12Dissertationapplication/pdf21002436https://bspace.buid.ac.ae/handle/1234/3372enoai:bspace.buid.ac.ae:1234/33722026-01-12T09:37:15Z
spellingShingle Non-Linear Time History Analysis of Moment Frame Structure with Performance-Based Approach on Different Concrete Compressive Strengths
ZAIDI, SYED HASSAAN AHMED
title Non-Linear Time History Analysis of Moment Frame Structure with Performance-Based Approach on Different Concrete Compressive Strengths
title_full Non-Linear Time History Analysis of Moment Frame Structure with Performance-Based Approach on Different Concrete Compressive Strengths
title_fullStr Non-Linear Time History Analysis of Moment Frame Structure with Performance-Based Approach on Different Concrete Compressive Strengths
title_full_unstemmed Non-Linear Time History Analysis of Moment Frame Structure with Performance-Based Approach on Different Concrete Compressive Strengths
title_short Non-Linear Time History Analysis of Moment Frame Structure with Performance-Based Approach on Different Concrete Compressive Strengths
title_sort Non-Linear Time History Analysis of Moment Frame Structure with Performance-Based Approach on Different Concrete Compressive Strengths
url https://bspace.buid.ac.ae/handle/1234/3372