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Modelling and visualization for the analysis and comprehension of the acoustic performance of buildings through the implementation of a building information modelling-based methodology

Identifiers
URI: http://hdl.handle.net/20.500.12251/3063
View/Open: https://www.scopus.com/inward/record.uri?eid=2-s2.0-85138248824&doi=10.1121%2f10.0013886&partnerID=40&md5=89ae5bbfb8f376eeb59b1be142c6c9d0
ISSN: 0001-4966
DOI: 10.1121/10.0013886
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Author
Hoz Torres, María Luisa de la; Aguilar Aguilera, Antonio Jesús; Martínez Aires, María Dolores; Ruiz Padillo, Diego Pablo
Date
2022
Subject/s

Building Information Modeling (BIM)

Gestión de la información

Acústica

Centro educativo

Unesco Subject/s

2201.02 Acústica Arquitectónica

1203.09 Diseño Con Ayuda del Ordenador

1203.18 Sistemas de Inform., Diseño Componentes

Abstract

Technical and technological advances have revolutionised the architecture, engineering, and construction industries in recent decades. Building information modelling (BIM) methodology has become essential in the process of information management and the development of building projects. This study aims to analyse the potential advantages of the implementation of BIM-based models for the acquisition of theoretical and procedural knowledge about building acoustics. This procedure was implemented as part of a problem-solving exercise in Science, Technology, Engineering, and Mathematics (STEM) university degrees. For this purpose, three-dimensional (3D) BIM models were generated to assess the contribution of their implementation in the process of visualization, comprehension, and analysis of the acoustic behaviour of buildings. The participants' experiences and satisfaction with the BIM models were measured through a questionnaire. The results showed a high level of satisfaction among the participants and good potential for the application of 3D models based on BIM methodology for the acquisition of knowledge and practical skills in building acoustics. These results highlight the potential of BIM models to provide information for understanding the procedure followed during data collection in the experimental analysis and to facilitate the understanding of system behavior. © 2022 Acoustical Society of America.

Technical and technological advances have revolutionised the architecture, engineering, and construction industries in recent decades. Building information modelling (BIM) methodology has become essential in the process of information management and the development of building projects. This study aims to analyse the potential advantages of the implementation of BIM-based models for the acquisition of theoretical and procedural knowledge about building acoustics. This procedure was implemented as part of a problem-solving exercise in Science, Technology, Engineering, and Mathematics (STEM) university degrees. For this purpose, three-dimensional (3D) BIM models were generated to assess the contribution of their implementation in the process of visualization, comprehension, and analysis of the acoustic behaviour of buildings. The participants' experiences and satisfaction with the BIM models were measured through a questionnaire. The results showed a high level of satisfaction among the participants and good potential for the application of 3D models based on BIM methodology for the acquisition of knowledge and practical skills in building acoustics. These results highlight the potential of BIM models to provide information for understanding the procedure followed during data collection in the experimental analysis and to facilitate the understanding of system behavior. © 2022 Acoustical Society of America.

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