INFORMAZIONI SU QUESTO ARTICOLO

Cita

Busch, J.F., 1992. Comfort in air-conditioned and naturally ventilated offices in Thailand, Energy and Buildings 18 (3-4) 235-249.10.1016/0378-7788(92)90016-ASearch in Google Scholar

N. Bernardi, D.C.C.K. Kowaltowski, 2006. Environmental comfort in school buildings: A case study of awareness and participation of users Environment and Behavior, 38 (2), pp. 155-172.10.1177/0013916505275307Search in Google Scholar

Chen, Q., 2009. Ventilation performance prediction for buildings: a method overview and recent applications, Building and Environment, 2009, Vol.44, N.4, pp.848 858.10.1016/j.buildenv.2008.05.025Search in Google Scholar

Catalina, T., & Iordache, V., 2012. IEQ assessment on schools in the design stage. Building andEnvironment, 49, 129-140.10.1016/j.buildenv.2011.09.014Search in Google Scholar

Constantinescu D. Caracaș G., 2014. Analizarea regimului higrotermic și determinarea necesarului de căldură de calcul al cladirilor rar încalzite (Analyzing the hygrothermal regime and determining the heating heat exchanger of the buildings that are rare heated). Conferința Instalații pentru construcții și economia de energie, Iasi 3-4 iulie 2014, 42-61.Search in Google Scholar

D.A. Coley, R. Greeves, B.K. Saxby, 2007. The effect of low ventilation rates on the cognitive function of a primary school class International Journal of Ventilation, 6 (2), pp. 107-112.10.1080/14733315.2007.11683770Search in Google Scholar

Dascalaki E., Santamouris M. et. al., 1995. Predicting Single Sided Natural Ventilation Rates in Buildings, Solar Energy, Vol. 55, No.5, pp.327 341.10.1016/0038-092X(95)00057-XSearch in Google Scholar

E.G. Dascalaki, V.G. Sermpetzoglou, 2011. Energy performance and indoor environmental quality in Hellenic schools Energy and Buildings, 43 (2), pp. 718-727.10.1016/j.enbuild.2010.11.017Search in Google Scholar

Energy Information Administration, 1995. State Energy Data Report 1995, Tables 3 through 7, ldura.Search in Google Scholar

EN 7730 ISO, 2005. Moderate Thermal Environment - Determination of the PMV and PPD Indices and Specification of the Conditions for Thermal Comfort, International Organization for Standardization, Geneva.Search in Google Scholar

Huang, Y. C., Chu, C. L., Lee, S. N. C., Lan, S. J., Hsieh, C. H., & Hsieh, Y. P., 2013. Building users’ perceptions of importance of indoor environmental quality in long-term care facilities. Building and Environment, 67, 224-230.10.1016/j.buildenv.2013.05.004Search in Google Scholar

Sarbu, I., & Sebarchievici, C., 2013. Aspects of indoor environmental quality assessment in buildings. Energy and buildings, 60, 410-419.10.1016/j.enbuild.2013.02.005Search in Google Scholar

M. Santamouris, A. Synnefa, M. Asssimakopoulos, I. Livada, K Pavlou, M. Papaglastra, et al., 2008. Experimental investigation of the air flow and indoor carbon dioxide concentration in classrooms with intermittent natural ventilation Energy and Buildings, 40 (10), pp. 1833-1843.10.1016/j.enbuild.2008.04.002Search in Google Scholar

Toftum J., 2010. Central automatic control or distribute the occupant control for better indoor environment quality in the future. Building and environment, 45(1), 23-28.10.1016/j.buildenv.2009.03.011Search in Google Scholar

eISSN:
2284-7197
ISSN:
2247-3769
Lingua:
Inglese
Frequenza di pubblicazione:
2 volte all'anno
Argomenti della rivista:
Engineering, Introductions and Overviews, other, Electrical Engineering, Energy Engineering, Geosciences, Geodesy