403
Views
5
CrossRef citations to date
0
Altmetric
Other

Double skin façade: energy performance in the United Arab Emirates

ORCID Icon, &

References

  • Aldawoud, A. 2013. Conventional fixed shading devices in comparison to an electrochromic glazing system in hot, dry climate. Energy and Buildings 59:104–10.
  • Anđelković, A. S., T. B. Cvjetković, D. D. Đaković, and I. H. Stojanović. 2012. The development of simple calculation model for energy performance of double skin façades. Thermal Science 16 (suppl. 1):251–67.
  • Anđelković, A. S., I. Mujan, and D. Stojanka. 2016. Experimental validation of a EnergyPlus model: Application of a multi-storey naturally ventilated double skin façade. Energy and Buildings 118:27–36.
  • Andjelković, A. S., J. R. Petrović, and M. V. Kljajić. 2016. Double or single skin facade in a moderate climate an EnergyPlus assessment. Thermal Science 20(suppl. 5):1501-1510.
  • Baharvand, M., A. M. Hamdan, and M. R. Abdul. 2013. DesignBuilder verification and validation for indoor natural ventilation.”. Journal of Basic and Applied Scientific Research (JBASR) 3 (4):8.
  • Barbosa, S., and I. Kenneth. 2014. Perspectives of double skin façades for naturally ventilated buildings: A review. Renewable and Sustainable Energy Reviews 40:1019–29.
  • Di Maio, F., and A. H. C. Van Paassen. 2000. Integration of HVAC systems and double facades in buildings. In Laboratory of refrigeration engineering and indoor climate technology handbook. The Netherlands: Delft University of Technology.
  • Ghaffarianhoseini, A., A. Ghaffarianhoseini, U. Berardi, J. Tookey, D. Hin, W. Li, and S. Kariminia. 2016. Exploring the advantages and challenges of double-skin façades (DSFs). Renewable and Sustainable Energy Reviews 60::1052–65.
  • Ghenai, C., T. Salameh, and A. Merabet. 2020. Technico-economic analysis of off grid solar PV/Fuel cell energy system for residential community in desert region. International Journal of Hydrogen Energy 45 (20):11460–70.
  • Halawa, E., A. Ghaffarianhoseini, A. Ghaffarianhoseini, J. Trombley, N. Hassan, M. Baig, S. Y. Yusoff, and M. A. Ismail. 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 82:2147–61.
  • Hamza, N. 2008. Double versus single skin facades in hot arid areas. Energy and Buildings 40 (3):240–48.
  • Jensen, R. L., and O. Kalyanova. 2008. Modelling a naturally ventilated double skin façade with a building thermal simulation program. Ph D-student
  • Koyunbaba, B. K., Z. Yilmaz, and K. Ulgen. 2013. An approach for energy modeling of a building integrated photovoltaic (BIPV) Trombe wall system. Energy and Buildings 67:680–88.
  • Larsen, S. F., C. Filippín, and G. Lesino. 2015. Modeling double skin green façades with traditional thermal simulation software. Solar Energy 121:56–67.
  • Li, M., M. Tao, J. Liu, L. Huanhuan, X. Yaling, G. Wenbo, and L. Shen. 2019. Numerical and experimental investigation of precast concrete facade integrated with solar photovoltaic panels. Applied Energy 253:113509.
  • Li, Y., J. Darkwa, G. Kokogiannakis, and S. Weiguang. 2019a. Effect of design parameters on thermal performance of integrated phase change material blind system for double skin façade buildings. International Journal of Low-Carbon Technologies 14 (2):286–93.
  • Li, Y., J. Darkwa, G. Kokogiannakis, and S. Weiguang. 2019b. Phase change material blind system for double skin façade integration: System development and thermal performance evaluation. Applied Energy 252:113376.
  • Nomura, M., and K. Hiyama. 2017. A review: Natural ventilation performance of office buildings in Japan. Renewable and Sustainable Energy Reviews 74:746–54.
  • Oesterle, E., R. Lieb, M. Lutz, W. Heusler, and D.-S. Facades. 2001. Integrated planning. Prestel, Munich-London-New York.
  • Peng, J., L. Lin, H. Yang, and M. Tao. 2015. Comparative study of the thermal and power performances of a semi-transparent photovoltaic façade under different ventilation modes. Applied Energy 138:572–83.
  • Saelens, D., J. Carmeliet, and H. Hens. 2003. Energy performance assessment of multiple-skin facades. HVAC&R Research 9 (2):167–85.
  • Salameh, T., M. E. H. Assad, M. Tawalbeh, C. Ghenai, A. Merabet, and H. F. Öztop. 2020a. Analysis of cooling load on commercial building in UAE climate using building integrated photovoltaic façade system. Solar Energy 199::617–29.
  • Salameh, T., C. Ghenai, A. Merabet, and M. Alkasrawi. 2020b. Techno-economical optimization of an integrated stand-alone hybrid solar PV tracking and diesel generator power system in Khorfakkan, United Arab Emirates. Energy 190:116475.
  • Sbia, R., M. Shahbaz, and I. Ozturk. 2017. Economic growth, financial development, urbanisation and electricity consumption nexus in UAE. Economic research-Ekonomska Istraživanja 30 (1):527–49.
  • Souza, L., C. Oliveira de, H. Artur de Souza, and E. F. Rodrigues. 2018. Experimental and numerical analysis of a naturally ventilated double-skin façade. Energy and Buildings 165::328–39.
  • Stavrakakis, G. M., M. K. Koukou, M. Gr Vrachopoulos, and N. C. Markatos. 2008. Natural cross-ventilation in buildings: Building-scale experiments, numerical simulation and thermal comfort evaluation. Energy and Buildings 40 (9):1666–81.
  • Streicher, W., R. Heimrath, H. Hengsberger, T. Mach, R. Waldner, G. Flamant, X. Loncour, G. Guarracino, H. Erhorn, and H. Erhorn-Kluttig. 2007. On the typology, costs, energy performance, environmental quality and operational characteristics of double skin façades in european buildings. Advances in Building Energy Research 1 (1):1–28.
  • Su, Z., L. Xiaofeng, and F. Xue. 2017. Double-skin façade optimization design for different climate zones in China. Solar Energy 155:281–90.
  • Tekreeti, A., and S. R. Shaker. 2015. Performance analysis of solar gain and day lighting effect using different choices of materials of double-skin facade under desert climatic conditions. The British University in Dubai (BUiD).

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.