CHARACTERIZATION AND MODELLING OF NON-LINEARITY IN QUASI-UD COMPOSITE WITH CONSIDERATION OF STRAIN RATE EFFECTS

Redesign of Kiaracondong Traditional Market is aimed at improving market performance so that the market’s role as a hub for social and economic activities can be enhanced. The structure consists of a three - story reinforced concrete framework with a steel roof structure. The project is located in B...

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Main Author: Raditya Kusuma, Rajendra
Format: Final Project
Language:Indonesia
Subjects:
Online Access:https://digilib.itb.ac.id/gdl/view/86314
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:86314
spelling id-itb.:863142024-09-17T14:16:48ZCHARACTERIZATION AND MODELLING OF NON-LINEARITY IN QUASI-UD COMPOSITE WITH CONSIDERATION OF STRAIN RATE EFFECTS Raditya Kusuma, Rajendra Teknik (Rekayasa, enjinering dan kegiatan berkaitan) Indonesia Final Project reinforced concrete structure, special moment frame system, earthquake-resistant structural analysis, facade anchoring INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/86314 Redesign of Kiaracondong Traditional Market is aimed at improving market performance so that the market’s role as a hub for social and economic activities can be enhanced. The structure consists of a three - story reinforced concrete framework with a steel roof structure. The project is located in Bandung, classified under Seismic Design Category D and Seismic Risk Category III. Therefore, a Special Moment Frame System is chosen as the building's structural system, and a Steel Frame System with Concentrically Braced Frames is selected for the steel roof structure. The design of the concrete structure was carried out using ETABS software, referring to the regulations in SNI 2847: 2019 and SNI 1727: 2019, while the roof design was performed separately with SAP 2000 software, based on SNI 1729 : 2020. For the structural analysis, the building was checked against earthquake loads in compliance with SNI 1726: 2019. The connection of the facade to the concrete structure was also designed following the guidelines in AISC Design Guide 1. This design considers the impact of seismic loads on non-structural elements to produce a more conservative design. The results include dimensions and reinforcement configurations for each structural element, the connection configurations between concrete and steel elements, as well as Detailed Engineering Drawings (DED) for each structural component. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
topic Teknik (Rekayasa, enjinering dan kegiatan berkaitan)
spellingShingle Teknik (Rekayasa, enjinering dan kegiatan berkaitan)
Raditya Kusuma, Rajendra
CHARACTERIZATION AND MODELLING OF NON-LINEARITY IN QUASI-UD COMPOSITE WITH CONSIDERATION OF STRAIN RATE EFFECTS
description Redesign of Kiaracondong Traditional Market is aimed at improving market performance so that the market’s role as a hub for social and economic activities can be enhanced. The structure consists of a three - story reinforced concrete framework with a steel roof structure. The project is located in Bandung, classified under Seismic Design Category D and Seismic Risk Category III. Therefore, a Special Moment Frame System is chosen as the building's structural system, and a Steel Frame System with Concentrically Braced Frames is selected for the steel roof structure. The design of the concrete structure was carried out using ETABS software, referring to the regulations in SNI 2847: 2019 and SNI 1727: 2019, while the roof design was performed separately with SAP 2000 software, based on SNI 1729 : 2020. For the structural analysis, the building was checked against earthquake loads in compliance with SNI 1726: 2019. The connection of the facade to the concrete structure was also designed following the guidelines in AISC Design Guide 1. This design considers the impact of seismic loads on non-structural elements to produce a more conservative design. The results include dimensions and reinforcement configurations for each structural element, the connection configurations between concrete and steel elements, as well as Detailed Engineering Drawings (DED) for each structural component.
format Final Project
author Raditya Kusuma, Rajendra
author_facet Raditya Kusuma, Rajendra
author_sort Raditya Kusuma, Rajendra
title CHARACTERIZATION AND MODELLING OF NON-LINEARITY IN QUASI-UD COMPOSITE WITH CONSIDERATION OF STRAIN RATE EFFECTS
title_short CHARACTERIZATION AND MODELLING OF NON-LINEARITY IN QUASI-UD COMPOSITE WITH CONSIDERATION OF STRAIN RATE EFFECTS
title_full CHARACTERIZATION AND MODELLING OF NON-LINEARITY IN QUASI-UD COMPOSITE WITH CONSIDERATION OF STRAIN RATE EFFECTS
title_fullStr CHARACTERIZATION AND MODELLING OF NON-LINEARITY IN QUASI-UD COMPOSITE WITH CONSIDERATION OF STRAIN RATE EFFECTS
title_full_unstemmed CHARACTERIZATION AND MODELLING OF NON-LINEARITY IN QUASI-UD COMPOSITE WITH CONSIDERATION OF STRAIN RATE EFFECTS
title_sort characterization and modelling of non-linearity in quasi-ud composite with consideration of strain rate effects
url https://digilib.itb.ac.id/gdl/view/86314
_version_ 1822999498742300672