Acceso abierto

Application of Double Skin Façade (DSF) and Electrochromic Glass in Buildings in Tropical Climate


Cite

Qahtan, A. M. (2019). Thermal performance of a double-skin façade exposed to direct solar radiation in the tropical climate of Malaysia: A case study. Case Studies in Thermal Engineering, 14(September), 100419, 1–9. QahtanA. M. 2019 Thermal performance of a double-skin façade exposed to direct solar radiation in the tropical climate of Malaysia: A case study Case Studies in Thermal Engineering 14 September 100419, 1 9 10.1016/j.csite.2019.100419 Search in Google Scholar

Barbosa, S., Kenneth, I., and Ryan Southall. (2015). hermal comfort in naturally ventilated buildings with double skin façade under tropical climate conditions: The influence of key design parameters. Energy and Buildings, 109, 397–406. BarbosaS. KennethI. SouthallRyan 2015 hermal comfort in naturally ventilated buildings with double skin façade under tropical climate conditions: The influence of key design parameters Energy and Buildings 109 397 406 10.1016/j.enbuild.2015.10.029 Search in Google Scholar

Halawa, E., Ghaffarianhoseini, A., Ghaffarianhoseini, A., Trombley, J., Hassan, N., Baig, M. & Ismail, M. A. (2018). A review on energy conscious designs of building façades in hot and humid climates: Lessons for (and from) Kuala Lumpur and Darwin. Renewable and Sustainable Energy Reviews, 82, 2147–2161. HalawaE. GhaffarianhoseiniA. GhaffarianhoseiniA. TrombleyJ. HassanN. BaigM. IsmailM. A. 2018 A review on energy conscious designs of building façades in hot and humid climates: Lessons for (and from) Kuala Lumpur and Darwin Renewable and Sustainable Energy Reviews 82 2147 2161 10.1016/j.rser.2017.08.061 Search in Google Scholar

Bonham, M. B. (2019). Bioclimatic Double-skin Façades. New York, Publisher Routledge. BonhamM. B. 2019 Bioclimatic Double-skin Façades New York Publisher Routledge 10.4324/9781315661384 Search in Google Scholar

Casini, M., (2015). Smart windows for energy efficiency of buildings. International Journal of Civil and Structural Engineering – IJCSE, 2(1), 230–238. CasiniM. 2015 Smart windows for energy efficiency of buildings International Journal of Civil and Structural Engineering – IJCSE 2 1 230 238 Search in Google Scholar

Elkadi, H. (2016). Cultures of glass architecture. New York, Publisher Routledge. ElkadiH. 2016 Cultures of glass architecture New York Publisher Routledge 10.4324/9781315575551 Search in Google Scholar

Kraft, A. and Rottmann. M.. (2009). Properties, performance and current status of the laminated electrochromic glass of Gesimat, Solar Energy Materials and Solar Cells, 93(12), 2088–2092. KraftA. RottmannM. 2009 Properties, performance and current status of the laminated electrochromic glass of Gesimat Solar Energy Materials and Solar Cells 93 12 2088 2092 10.1016/j.solmat.2009.05.010 Search in Google Scholar

Baldinelli, G. (2009). Double skin façades for warm climate regions: Analysis of a solution with an integrated movable shading system. Building and environment, 44(6), 1107–1118. BaldinelliG. 2009 Double skin façades for warm climate regions: Analysis of a solution with an integrated movable shading system Building and environment 44 6 1107 1118 10.1016/j.buildenv.2008.08.005 Search in Google Scholar

Oltean, M. (2006). Switchable Glass: A possible medium for Evolvable Hardware. Proceedings of the first NASA/ESA conference on Adaptive Hardware and Systems, 81–87. OlteanM. 2006 Switchable Glass: A possible medium for Evolvable Hardware Proceedings of the first NASA/ESA conference on Adaptive Hardware and Systems 81 87 10.1109/AHS.2006.69 Search in Google Scholar

Kragh M. (2002). Mechanically ventilated double skin façades. In Advances in Building Technology, Amsterdam Publisher Elsevier, 1233–111240. KraghM. 2002 Mechanically ventilated double skin façades In Advances in Building Technology Amsterdam Publisher Elsevier 1233 111240 10.1016/B978-008044100-9/50153-4 Search in Google Scholar

Singh, R. J., Rosseinsky, D. R., & Monk, P. M. (Eds.). (2015). Electrochromic materials and devices. New Jersey, Publisher John Wiley & Sons. SinghR. J. RosseinskyD. R. MonkP. M. Eds. 2015 Electrochromic materials and devices New Jersey Publisher John Wiley & Sons Search in Google Scholar

Tse, E. (2016). Let's talk architecture: An introduction to glass buildings. Proceedings of the 2016 ACM International Conference on Interactive Surfaces and Spaces: Nature Meets Interactive Surfaces, ISS 2016, 521–524. TseE. 2016 Let's talk architecture: An introduction to glass buildings Proceedings of the 2016 ACM International Conference on Interactive Surfaces and Spaces: Nature Meets Interactive Surfaces, ISS 2016 521 524 10.1145/2992154.2996363 Search in Google Scholar

Purwanto, L. M. F., & Tichelmann, K. (2018). Solar heat transfer in architectural glass facade in Semarang Indonesia. A/Z ITU Journal of the Faculty of Architecture, 15(2), 147–152. PurwantoL. M. F. TichelmannK. 2018 Solar heat transfer in architectural glass facade in Semarang Indonesia A/Z ITU Journal of the Faculty of Architecture 15 2 147 152 10.5505/itujfa.2018.50465 Search in Google Scholar

Singh, M. C., & Garg, S. N. (2011). Suitable glazing selection for glass-curtain walls in tropical climates of India. International Scholarly Research Network Renewable Energy, 1–11. SinghM. C. GargS. N. 2011 Suitable glazing selection for glass-curtain walls in tropical climates of India International Scholarly Research Network Renewable Energy 1 11 10.5402/2011/484893 Search in Google Scholar

eISSN:
2720-6947
Idioma:
Inglés
Calendario de la edición:
4 veces al año
Temas de la revista:
Architecture and Design, Architecture, Architects, Buildings