Flexible and Sustainable Incremental Houses: Advancing Semi-Volumetric Systems of Prefabricated Construction for Rapid Urbanization in Indonesia

The Indonesian population is projected to increase by 66.65 in 2035 due to the continuous rise in urbanization globally. The growth contributed to the growing housing backlog and limited availability of residential spaces. This led to the evolution of incremental housing construction as an appropria...

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Main Authors: Viata Viriezky, Dalhar Susanto, Miktha Farid Alkadri
Format: Article
Language:English
Published: MDPI AG 2024-12-01
Series:Infrastructures
Subjects:
Online Access:https://www.mdpi.com/2412-3811/10/1/5
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author Viata Viriezky
Dalhar Susanto
Miktha Farid Alkadri
author_facet Viata Viriezky
Dalhar Susanto
Miktha Farid Alkadri
author_sort Viata Viriezky
collection DOAJ
description The Indonesian population is projected to increase by 66.65 in 2035 due to the continuous rise in urbanization globally. The growth contributed to the growing housing backlog and limited availability of residential spaces. This led to the evolution of incremental housing construction as an appropriate solution to residents’ needs. However, several factors hinder the implementation of incremental housing, including prolonged construction durations that delay the completion of an entire house, compromised quality of workmanship and materials, as well as poor flexibility. Conventional on-site construction, with concrete serving as the main material, led to prolonged construction time, difficult renovation, and untreatable waste. Preliminary studies have been conducted on incremental housing from urban development and financial perspectives, with none on alternative construction systems. Therefore, this study aimed to develop flexible and sustainable incremental housing with an assembly–disassembly system capable of reducing construction time and waste. This study experimented on the connection systems through digital simulations and prototypes leading to a construction system that combines frames and panels in a semi-volumetric system. It also combined a plug-and-play connection type to achieve the highest assembly–disassembly efficiency value (0.07), the lowest waste (below 25%), and a 30% shorter construction time. The result showed no displacement when tested with a load of up to 3 tons. This study contributed to the growing body of knowledge on alternative incremental house construction techniques, paving the way for more adaptable and environmentally responsible housing solutions in urban settings, particularly in rapidly urbanizing regions like Indonesia.
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publishDate 2024-12-01
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series Infrastructures
spelling doaj-art-350ebbd3a83f499f990c31ed14b6cb9a2025-01-24T13:35:22ZengMDPI AGInfrastructures2412-38112024-12-01101510.3390/infrastructures10010005Flexible and Sustainable Incremental Houses: Advancing Semi-Volumetric Systems of Prefabricated Construction for Rapid Urbanization in IndonesiaViata Viriezky0Dalhar Susanto1Miktha Farid Alkadri2Research Cluster of Architectural Sciences and Building Technology (ASBT), Department of Architecture, Faculty of Engineering, Universitas Indonesia, Depok 16424, IndonesiaResearch Cluster of Architectural Sciences and Building Technology (ASBT), Department of Architecture, Faculty of Engineering, Universitas Indonesia, Depok 16424, IndonesiaResearch Cluster of Architectural Sciences and Building Technology (ASBT), Department of Architecture, Faculty of Engineering, Universitas Indonesia, Depok 16424, IndonesiaThe Indonesian population is projected to increase by 66.65 in 2035 due to the continuous rise in urbanization globally. The growth contributed to the growing housing backlog and limited availability of residential spaces. This led to the evolution of incremental housing construction as an appropriate solution to residents’ needs. However, several factors hinder the implementation of incremental housing, including prolonged construction durations that delay the completion of an entire house, compromised quality of workmanship and materials, as well as poor flexibility. Conventional on-site construction, with concrete serving as the main material, led to prolonged construction time, difficult renovation, and untreatable waste. Preliminary studies have been conducted on incremental housing from urban development and financial perspectives, with none on alternative construction systems. Therefore, this study aimed to develop flexible and sustainable incremental housing with an assembly–disassembly system capable of reducing construction time and waste. This study experimented on the connection systems through digital simulations and prototypes leading to a construction system that combines frames and panels in a semi-volumetric system. It also combined a plug-and-play connection type to achieve the highest assembly–disassembly efficiency value (0.07), the lowest waste (below 25%), and a 30% shorter construction time. The result showed no displacement when tested with a load of up to 3 tons. This study contributed to the growing body of knowledge on alternative incremental house construction techniques, paving the way for more adaptable and environmentally responsible housing solutions in urban settings, particularly in rapidly urbanizing regions like Indonesia.https://www.mdpi.com/2412-3811/10/1/5incremental houseprefabrication constructionsemi-volumetricassembly–disassemblysustainable construction
spellingShingle Viata Viriezky
Dalhar Susanto
Miktha Farid Alkadri
Flexible and Sustainable Incremental Houses: Advancing Semi-Volumetric Systems of Prefabricated Construction for Rapid Urbanization in Indonesia
Infrastructures
incremental house
prefabrication construction
semi-volumetric
assembly–disassembly
sustainable construction
title Flexible and Sustainable Incremental Houses: Advancing Semi-Volumetric Systems of Prefabricated Construction for Rapid Urbanization in Indonesia
title_full Flexible and Sustainable Incremental Houses: Advancing Semi-Volumetric Systems of Prefabricated Construction for Rapid Urbanization in Indonesia
title_fullStr Flexible and Sustainable Incremental Houses: Advancing Semi-Volumetric Systems of Prefabricated Construction for Rapid Urbanization in Indonesia
title_full_unstemmed Flexible and Sustainable Incremental Houses: Advancing Semi-Volumetric Systems of Prefabricated Construction for Rapid Urbanization in Indonesia
title_short Flexible and Sustainable Incremental Houses: Advancing Semi-Volumetric Systems of Prefabricated Construction for Rapid Urbanization in Indonesia
title_sort flexible and sustainable incremental houses advancing semi volumetric systems of prefabricated construction for rapid urbanization in indonesia
topic incremental house
prefabrication construction
semi-volumetric
assembly–disassembly
sustainable construction
url https://www.mdpi.com/2412-3811/10/1/5
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AT mikthafaridalkadri flexibleandsustainableincrementalhousesadvancingsemivolumetricsystemsofprefabricatedconstructionforrapidurbanizationinindonesia