Investigation on the potential of improving daylight efficiency of office buildings by curved facade optimization
Author:
Publisher
Springer Science and Business Media LLC
Subject
Energy (miscellaneous),Building and Construction
Link
http://link.springer.com/content/pdf/10.1007/s12273-019-0586-5.pdf
Reference49 articles.
1. Acosta I, Munoz C, Campano MA, Navarro J (2015). Analysis of daylight factors and energy saving allowed by windows under overcast sky conditions. Renewable Energy, 77: 194–207.
2. BSI (2019). EN 17037: 2019. Daylight in buildings. British Standards Institute.
3. Caldas L, Santos L (2016). Painting with light: An interactive evolutionary system for daylighting design. Building and Environment, 109: 154–174.
4. Chen S, Montgomery J, Bolufe-Rohler A (2015). Measuring the curse of dimensionality and its effects on particle swarm optimization and differential evolution. Applied Intelligence, 42: 514–526.
5. Chen KW, Janssen P, Schlueter A (2018). Multi-objective optimisation of building form, envelope and cooling system for improved building energy performance. Automation in Construction, 94: 449–457.
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