id |
caadria2017_081 |
authors |
Yokoi, Kazuki, Fukuda, Tomohiro, Yabuki, Nobuyoshi and Motamedi, Ali |
year |
2017 |
title |
Integrating BIM, CFD and AR for Thermal Assessment of Indoor Greenery |
source |
P. Janssen, P. Loh, A. Raonic, M. A. Schnabel (eds.), Protocols, Flows, and Glitches - Proceedings of the 22nd CAADRIA Conference, Xi'an Jiaotong-Liverpool University, Suzhou, China, 5-8 April 2017, pp. 85-94 |
doi |
https://doi.org/10.52842/conf.caadria.2017.085
|
summary |
The renovation projects to improve the thermal environment are gaining importance because of energy saving effects and occupants' health considerations. However, the indoor thermal design is not usu-ally performed in a very efficient manner by owners and designers because the architectural design data including the indoor thermal design is not centrally managed among all professional designers. Additionally, the visualizations of the CFD simulation results are difficult for the stakeholders to understand. On the other hand, greenery has been introduced to buildings as a method for adjusting the thermal condition. The research goal presented in this paper is to investigate a cooperative architectural design process for the thermal environment by developing a system in which BIM, CFD, and AR are integrated to provide interactive visualizations. Case studies are performed to verify the developed system and to assess the thermal effects of multiple indoor greenery design options. |
keywords |
Interdisciplinary Computational Design; Indoor Thermal Environment; Computational Fluid Dynamics (CFD); Augmented Reality (AR); Indoor Greenery |
series |
CAADRIA |
email |
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full text |
file.pdf (2,369,211 bytes) |
references |
Content-type: text/plain
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last changed |
2022/06/07 07:57 |
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