Luís Mateus
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Associate Professor
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About
Luís Mateus is an Associate Professor at Universidade de Lisboa in Portugal. His research areas include thermo-responsive materials, bio-inspired structures, and Building Information Modeling (BIM) applications in historical heritage maintenance and flood management planning. He has published extensively on topics such as scan-to-BIM methodologies and quantitative analysis of BIM practices in the architecture, engineering, and construction (AEC) industry.
Recent Grants
Grant: Close
Quad2BIM (H2020-MSCA-IF-2019)
Open Date: 2020-09-01
Close Date: 2023-09-01
Grant: Close
3D-SMoHC (3D SMART MODELS FOR HERITAGE CONSERVATION)
Open Date: 2017-06-01
Close Date: 2019-06-01
Grant: Close
Ferramenta estendida acoplada ao BIM para a melhoria da eficiência energética e qualidade do ambiente interior na renovação de edifícios
Open Date: 2016-07-01
Close Date: 2019-12-01
Grant: Close
Gesto: Um processo experimental para determinar o sentido de uma obra de arquitectura
Open Date: 2014-05-01
Close Date: 2015-10-01
Grant: Close
ReabOp - Optimização de fluxos de trabalho de documentação em reabilitação de estruturas construídas
Open Date: 2013-07-01
Close Date: 2015-12-01
Articles (6)
Historical Heritage Maintenance via Scan-to-BIM Approaches: A Case Study of the Lisbon Agricultural Exhibition Pavilion
Building Information Modeling (BIM) has emerged as a revolutionary tool in the domain of architectural conservation and documentation. When combined with terrestrial 3D laser scanning, it presents a powerful method to capture and represent the intricate details and nuances of historic structures. Such buildings, with their unique architectural lineage, often exude a geometric complexity unparalleled by standard designs. Consequently, the transition from scan data to a BIM framework, or the scan-to-BIM process, becomes intricate and time-intensive. Beyond the challenge of digital translation, the true essence of these historic buildings lies not only in their geometric form but also in understanding and preserving their design logic, formal composition rules, and primitive geometry. It then becomes imperative that the resulting model maintains fidelity in terms of proportion, shape, symmetry, and spatial rationale. Considering these challenges and potentials, this article delves into the process of digitalizing and BIM modeling of the Lisbon Agricultural Exhibition Pavilion located in Portugal. Our study proceeds in a tripartite structure: initiating with an in-depth terrestrial 3D laser scanning of the pavilion, followed by a comprehensive registration, processing, and alignment of the acquired scans, and culminating in a detailed BIM model using the industry-standard Revit 2020 software.
Year:
2024
Collaborators (1)
Victor Ferreira
Universidade de Aveiro

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