Open Access
Issue
E3S Web Conf.
Volume 248, 2021
2021 3rd International Conference on Civil Architecture and Energy Science (CAES 2021)
Article Number 01029
Number of page(s) 4
Section Chemical Performance Structure Research and Environmental Pollution Control
DOI https://doi.org/10.1051/e3sconf/202124801029
Published online 12 April 2021
  1. Pomponi, F., et al., Energy performance of Double-Skin Façades in temperate climates: A systematic review and meta-analysis, Renewable and Sustainable Energy Reviews, 54, 2016) [Google Scholar]
  2. Hang, Y., Analysis of fire hazard of double-layer curtain wall based on geometric structure and ventilation mode, Fire Science and Technology, 37(08), 1079–1083 (2018) [Google Scholar]
  3. Tianqi, Y. and W. Yan, Study on energy consumption simulation of outer-circulation double-glazed curtain wall, Building Energy Conservation, 48(06), 12–17 + 21 (2020) [Google Scholar]
  4. Lin, L., Research and analysis on the theory and engineering application of double-layer curtain walls at home and abroad, Green Building, 10 (04), 39–41(2018) [Google Scholar]
  5. Cun, H., et al., Research progress and prospects of double-layer thermal channel glass curtain wall, Environmental Engineering, 33(S1), 806–811(2015) [Google Scholar]
  6. Rayment, R., Energy savings from sealed double and heat reflecting glazing units, Building Services Engineering Research & Technology, 10, 1989) [Google Scholar]
  7. Grabe, J.v., A prediction tool for the temperature field of double facades Energy & Buildings, 34, 2002) [Google Scholar]
  8. Qingyu, Z., Du Guofu, and Z. Yu, CFD simulation calculation of comprehensive heat transfer coefficient of internally breathing glass curtain wall, HVAC, 06, 102–106 (2005) [Google Scholar]
  9. Gratia, E. and A.D. Herde, Greenhouse effect in double-skin facade Energy & Buildings, 39, 2006) [Google Scholar]
  10. Tao, L., G. Pingdao, and W. Shixiong, CFD numerical simulation of thermal performance of hot aisle glass curtain wall, Journal of Donghua University (Natural Science Edition), 04, 486–489 (2008) [Google Scholar]
  11. Bielek, B., J. Klem, and M. Macák, Physical Cavity of a Double Skin Facade as a Source of Pre-Heated Air in the Winter Season for the Heat Recovery Unit of a Facade, Slovak Journal of Civil Engineering, 27(4), 7–10(2019) [Google Scholar]
  12. Lingfeng, S. and L. Peng, Research on energy saving of outer circulation double-layer curtain wall, Clean and Air Conditioning Technology, 01, 45–48 (2015) [Google Scholar]
  13. Preet, S., M.K. Sharma, and J. Mathur, Performance evaluation of Photovoltaic double-skin facade with forced ventilation in the composite climate, Journal of Building Engineering, 32 (prepublish), 2020) [Google Scholar]
  14. Dan, L., et al., Numerical simulation study on ventilation performance of double-curtain wall buildings, Journal of Zhejiang University (Engineering Science Edition), 01, 47–51 (2005) [Google Scholar]
  15. Li Rongmin and G. Jianming, Simulation and analysis of airflow organization in the hot aisle of glass curtain wall, Heating Ventilation and Air Conditioning, 01, 23–28 (2007) [Google Scholar]
  16. Yong, D., L. Baizhan, and L. Hong, Measurement and analysis of the ventilation effect of a double-skinned envelope structure in Chongqing, Heating Ventilation and Air Conditioning, 08, 42–45 (2007) [Google Scholar]
  17. Xu, X.-l. and Z. Yang, Natural ventilation in the double skin facade with venetian blind, Energy & Buildings, 40, 2008) [Google Scholar]
  18. Miao, L. and C.-L. Chow, Investigation of burning photovoltaic panels on a double-skin facade with ejecting flame from an adjacent room fire Indoor and Built Environment, 28, 2019) [Google Scholar]
  19. Pourshab, N., M.D. Tehrani, and D. Toghraie, Application of double glazed façades with horizontal and vertical louvers to increase natural air flow in office buildings, Energy & Buildings, C, 200 (2020) [Google Scholar]
  20. Yao, T., et al., Ventilation performance of a naturally ventilated double-skin façade in buildings, Renewable Energy, 200(C), 2020) [Google Scholar]
  21. Lieyu, H., The influence of single-layer or DSFs in high-rise office buildings on air-conditioning load, Architecture Science, 14(4), 29–34 (1998) [Google Scholar]

Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.

Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.

Initial download of the metrics may take a while.