249
Views
2
CrossRef citations to date
0
Altmetric
Articles

Field measurements on thermal stratification and cooling potential of natural ventilation for large space buildings

, , , , , & show all
Pages 49-62 | Received 19 Mar 2018, Accepted 02 Nov 2018, Published online: 26 Dec 2018

References

  • Building Energy Conservation Center of Tsinghua University. (2013). The annual development report of China building energy saving 2013. Beijing. China: China Architecture & Building Press.
  • Chen, Q. (2009). Ventilation performance prediction for buildings: A method overview and recent applications. Build Environ, 44(4), 848–858.
  • Chow, C. L., & Li, J. (2010). An analytical model on static smoke exhaust in Atria. Journal of Civil Engineering and Management, 16(3), 372–381.
  • de Dear, R. J., & Brager, G. S. (2002). Thermal comfort in naturally ventilated buildings: Revisions to ASHRAE Standard 55. Energy and Buildings, 34(6), 549–561.
  • Green Building. (2014). Assessment standard for green building (GB/T 50378-2014). Beijing, China. The ministry of construction of the People’s Republic of China.
  • Huang, C., Zou, Z., Li, M., Wang, X., Li, W., Huang, W., … Xiao, X. (2007). Measurements of indoor thermal environment and energy analysis in a large space building in typical seasons. Building and Environment, 42(5), 1869–1877.
  • Indraganti, M. (2010). Thermal comfort in naturally ventilated apartments in summer: Findings from a field study in Hyderabad, India. Applied Energy, 87(3), 866–883.
  • Li, Y., & Delsante, A. (2001). Natural ventilation induced by combined wind and thermal forces. Building and Environment, 36(1), 59–71.
  • Lin, J. T., & Chuah, Y. K. (2011). A study on the potential of natural ventilation and cooling for large spaces in subtropical climatic regions. Build and Environment, 46(1), 89–97.
  • Liu, G., Cen, C., Zhang, Q., Liu, K., & Dang, R. (2016). Field study on thermal comfort of passenger at high-speed railway station in transition season. Building and Environment, 108, 220–229.
  • Lomas, K. J., Cook, M. J., & Fiala, D. (2007). Low energy architecture for a severe US climate: Design and evaluation of a hybrid ventilation strategy. Energy and Buildings, 39(1), 32–44.
  • Luo, Z., Zhao, J., Gao, J., & He, L. (2007). Estimating natural-ventilation potential considering both thermal comfort and IAQ issues. Building and Environment, 42(6), 2289–2298.
  • Meteorological information center of China Meteorological Administration & Architecture technology science department of Tsinghua University. (2005). Meteorological data set for analysis of thermal environment in China. Beijing: China Architecture & Building Press.
  • Pan, Y., Li, Y., Huang, Z., & Wu, G. (2010). Study on simulation methods of atrium building cooling load in hot and humid regions. Energy and Buildings, 42(10), 1654–1660.
  • Rajasekar, E., & Ramachandraiah, A. (2010). Adaptive comfort and thermal expectations-a subjective evaluation in hot humid climate. In Proceedings of conference: Adapting to change: New thinking on comfort, Cumberland Lodge, Windsor, UK, 9–11 April 2010. London, UK: Network for Comfort and Energy Use in Buildings.
  • Said, M. N. A., MacDonald, R. A., & Durrant, G. C. (1996). Measurement of thermal stratification in large single-cell buildings. Energy and Buildings, 24(2), 105–115.
  • Schulze, T., & Eicker, U. (2013). Controlled natural ventilation for energy efficient buildings. Energy and Buildings, 56, 221–232.
  • Shastry, V., Mani, M., & Tenorio, R. (2012). Impacts of Modern Transitions on Thermal Comfort in Vernacular Dwellings in Warm-Humid Climate of Sugganahalli (India). Indoor and Built Environment, 11–17.
  • Singh, M. K., Mahapatra, S., & Atreya, S. K. (2010). Thermal performance study and evaluation of comfort temperatures in vernacular buildings of North-East India. Building and Environment, 45(2), 320–329.
  • The ASHRAE Handbook Committee. (2009). Thermal comfort. In Fundamentals (Vol. 9, pp. 1–9 & 27). Atlanta, GA: American Society of Heating, Refrigeration and Air-Conditioning Engineers, Inc.
  • Wang, X., Huang, C., & Cao, W. (2009). Mathematical modeling and experimental study on vertical temperature distribution of hybrid ventilation in an atrium building. Energy and Buildings, 41(9), 907–914.
  • Zhang, J. Y., Lu, W. Z., Huo, R., & Feng, R. (2008). A new model for determining neutral-plane position in shaft space of a building under fire situation. Building and Environment, 43(6), 1101–1108.

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.