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ARPAV Regional Agency for Environment Protection in Veneto (2011). Bilancio Energetico della
Regione Veneto con dettagli provinciali sulla base dei dati disponibili fi no all’anno 2010
(Veneto Region Energy balance with province details on the basis of data available till 2010).
Technical Report.
Berkovic, S., Yezioro, A., & Bitan, A. (2012). Study of thermal comfort in courtyards in a hot arid
climate. Solar Energy, 86 , 1173–1186.
Bruse, M., & Fleer, H. (1998). Simulating surface-plant air interactions inside urban environments
with a three dimensional numerical model. Environmental Modelling and Software, 13 ,
373–384.
Busato, F., Lazzarin, R., & Noro, M. (2014). Three years of study of the Urban Heat Island in
Padua: Experimental results. Sustainable Cities and Society, 10 , 251–258, http://dx.doi.
org/10.1016/j.scs.2013.05.001 .
Gagge, A. P., Fobelets, A. P., & Berglund, L. G. (1986). A standard predictive index of human
response to the thermal environment. ASHRAE Transactions, 92 , 709–731.
Honjo, T. (2009). Thermal comfort in outdoor environment. Global Environmental Research, 13 ,
43–47.
Höppe, P. (1999). The physiological equivalent temperature-a universal index for the biometeorological assessment of the thermal environment. International Journal of Biometeorology, 43 ,
71–75.
ISTAT Italian Statistical Institute (2012, July 30). Indicatori Ambientali Urbani (Urban
Environmental Indexes). Technical Report. Available online, http://www.istat.it/it/
archivio/67990 . Accessed 1 Mar 2013.
Jendritzky, G., & Nubler, W. (1981). A model analysing the urban thermal environment in physiologically signifi cant terms. Meteorology and Atmospheric Physics, 29 , 313–326.
Matzarakis, A., Rutz, F., & Mayer, H. (2007). Modelling radiation fl uxes in simple and complex
environments – application of the RayMan model. International Journal of Biometeorology,
51 , 323–334.
Matzarakis, A., Rutz, F., & Mayer, H. (2010). Modelling radiation fl uxes in simple and complex
environments – basics of the RayMan model. International Journal of Biometeorology, 54 ,
131–139.
Mayer, H. (1993). Urban bioclimatology. Experientia, 49 , 957–963.
Mayer, H., & Höppe, P. (1987). Thermal comfort of man in different urban environments.
Theoretical and Applied Climatology, 38 , 43–49.
Noro, M., Lazzarin, R., & Busato, F. (2015). Urban heat island in Padua, Italy: Experimental and
theoretical analysis. Indoor and Built Environment, 24 (4), 514–533. doi: 10.1177/14203
26X13517404 .
Rizwan, A. M., Dennis, V. C. L., & Liu, C. (2008). A review on the generation, determination and
mitigation of urban heat island. Journal of Environmental Sciences, 20 , 120–128.
Thorsson, S., Lindqvist, M., & Lindqvist, S. (2004). Thermal bioclimatic conditions and patterns
of behaviour in an urban park in Göteborg, Sweden. International Journal of Biometeorology,
48 , 149–156.
7 The Urban Corridor of Venice and The Case of Padua
References
ARPAV Regional Agency for Environment Protection in Veneto (2011). Bilancio Energetico della
Regione Veneto con dettagli provinciali sulla base dei dati disponibili fi no all’anno 2010
(Veneto Region Energy balance with province details on the basis of data available till 2010).
Technical Report.
Berkovic, S., Yezioro, A., & Bitan, A. (2012). Study of thermal comfort in courtyards in a hot arid
climate. Solar Energy, 86 , 1173–1186.
Bruse, M., & Fleer, H. (1998). Simulating surface-plant air interactions inside urban environments
with a three dimensional numerical model. Environmental Modelling and Software, 13 ,
373–384.
Busato, F., Lazzarin, R., & Noro, M. (2014). Three years of study of the Urban Heat Island in
Padua: Experimental results. Sustainable Cities and Society, 10 , 251–258, http://dx.doi.
org/10.1016/j.scs.2013.05.001 .
Gagge, A. P., Fobelets, A. P., & Berglund, L. G. (1986). A standard predictive index of human
response to the thermal environment. ASHRAE Transactions, 92 , 709–731.
Honjo, T. (2009). Thermal comfort in outdoor environment. Global Environmental Research, 13 ,
43–47.
Höppe, P. (1999). The physiological equivalent temperature-a universal index for the biometeorological assessment of the thermal environment. International Journal of Biometeorology, 43 ,
71–75.
ISTAT Italian Statistical Institute (2012, July 30). Indicatori Ambientali Urbani (Urban
Environmental Indexes). Technical Report. Available online, http://www.istat.it/it/
archivio/67990 . Accessed 1 Mar 2013.
Jendritzky, G., & Nubler, W. (1981). A model analysing the urban thermal environment in physiologically signifi cant terms. Meteorology and Atmospheric Physics, 29 , 313–326.
Matzarakis, A., Rutz, F., & Mayer, H. (2007). Modelling radiation fl uxes in simple and complex
environments – application of the RayMan model. International Journal of Biometeorology,
51 , 323–334.
Matzarakis, A., Rutz, F., & Mayer, H. (2010). Modelling radiation fl uxes in simple and complex
environments – basics of the RayMan model. International Journal of Biometeorology, 54 ,
131–139.
Mayer, H. (1993). Urban bioclimatology. Experientia, 49 , 957–963.
Mayer, H., & Höppe, P. (1987). Thermal comfort of man in different urban environments.
Theoretical and Applied Climatology, 38 , 43–49.
Noro, M., Lazzarin, R., & Busato, F. (2015). Urban heat island in Padua, Italy: Experimental and
theoretical analysis. Indoor and Built Environment, 24 (4), 514–533. doi: 10.1177/14203
26X13517404 .
Rizwan, A. M., Dennis, V. C. L., & Liu, C. (2008). A review on the generation, determination and
mitigation of urban heat island. Journal of Environmental Sciences, 20 , 120–128.
Thorsson, S., Lindqvist, M., & Lindqvist, S. (2004). Thermal bioclimatic conditions and patterns
of behaviour in an urban park in Göteborg, Sweden. International Journal of Biometeorology,
48 , 149–156.
7 The Urban Corridor of Venice and The Case of Padua
