id |
caadria2021_404 |
authors |
Kim, Jong Bum, Aman, Jayedi and Balakrishnan, Bimal |
year |
2021 |
title |
Forecasting performance of Smart Growth development with parametric BIM-based microclimate simulations |
doi |
https://doi.org/10.52842/conf.caadria.2021.1.411
|
source |
A. Globa, J. van Ameijde, A. Fingrut, N. Kim, T.T.S. Lo (eds.), PROJECTIONS - Proceedings of the 26th CAADRIA Conference - Volume 1, The Chinese University of Hong Kong and Online, Hong Kong, 29 March - 1 April 2021, pp. 411-420 |
summary |
Smart Growth is a fast-growing urban design and planning movement developed by the United States Environmental Protection Agency (EPA). These regulations control urban morphologies such as building form, position, façade configurations, building materials, road configurations, which have an explicit association with the microclimate and outdoor comfort. This paper presents an urban modeling and simulation framework that can represent the urban morphology and its impact on microclimate shaped by Smart Growth. First, we created urban models using custom parametric objects and a building component library in BIM. Then we integrated parametric BIM and multiple performance simulations, including wind analysis, solar accessibility, and energy use. For implementation, a case study was carried out using two Smart Growth regulations in the Kansas City metropolitan area. The paper elaborates on the findings from simulation results, challenges in implementation, and limitations of the proposed framework to manage a large number of regulation variables in simulation. |
keywords |
Smart Growth Regulations; Building Information Modeling (BIM); Parametric Simulation; Microclimate Simulation; Computational Fluid Dynamics (CFD) |
series |
CAADRIA |
email |
kimjongb@missouri.edu |
full text |
file.pdf (6,868,301 bytes) |
references |
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last changed |
2022/06/07 07:52 |
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