REFERENCES
Ballantyne, E.R., Hill, R.K. and Spencer, J.W. 1977. Probit analysis of thermal sensation assessments. International Journal of Biometeorology 21. 29-43.
Crossref
Chen, L. and Ng, E. 2012. Outdoor thermal comfort and outdoor activities: a review of research in the past decade. Cities 29. 118-125.
Crossref
Chen, L., Wen, Y., Zhang, L. and Xiang, W.N. 2015. Studies of thermal comfort and space use in an urban park square in cool and cold seasons in Shanghai. Building and Environment 94. 644-653.
Crossref
Fröhlich, D. and Matzarakis, A. 2013. Modelling of changes in thermal bioclimate: examples based on urban spaces in Freiburg, Germany. Theoretical and Applied Climatology 111. 547-558.
Crossref
Gómez, F., Pérez Cueva, A., Valcuende, M. and Matzarakis, A. 2013. Research on ecological design to enhance comfort in open spaces of a city (Valencia, Spain). Utility of the physiological equivalent temperature (PET). Ecological Engineering 57. 27-39.
Crossref
Gulyás, Á., Matzarakis, A. and Unger, J. 2009. Differences in the thermal bioclimatic conditions on the urban and rural areas in a southern Hungarian city (Szeged). Berichte des Meteorologischen Institutes der Universität Freiburg 18. 229-234.
Gulyás, Á., Unger, J. and Matzarakis, A. 2006. Assessment of the microclimatic and human comfort conditions in a complex urban environment: modelling and measurements. Building and Environment 41. 1713-1722.
Crossref
HMS 2015.
Climate characteristics of Szeged.
Höppe, P. 1992. Ein neues Verfahren zur Bestimmung der mittleren Strahlungstemperatur im Freien. Wetter und Leben 44. 147-151.
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.
Crossref
Hwang, R-L. and Lin, T-P. 2007. Thermal comfort requirements for occupants of semi-outdoor and outdoor environments in hot-humid regions. Architectural Science Review 50. 357-364.
Crossref
Hwang, R-L., Lin, T-P. and Matzarakis, A. 2011. Seasonal eff ects of urban street shading on longterm outdoor thermal comfort. Building and Environment 46. 863-870.
Crossref
IPCC 2014. Climate Change 2014: Synthesis Report, 2014. Contribution of Working Groups I, II and III to the Fift h Assessment Report of the Intergovernmental Panel on Climate Change (Core Writing Team, eds. Pachauri, R.K. and Meyer, L.A.), Geneva, IPCC.
Kántor, N. and Unger, J. 2010. Benefi ts and opportunities of adopting GIS in thermal comfort studies in resting places: An urban park as an example. Landscape and Urban Planning 98. 36-46.
Crossref
Kántor, N. and Unger, J. 2011. The most problematic variable in the course of human biometeorological comfort assessment - the mean radiant temperature. Central European Journal of Geosciences 3. 90-100.
Crossref
Kántor, N., Égerházi, L.A. and Unger, J. 2012a. Subjective estimation of thermal environment in recreational urban spaces. Part 1: investigations in Szeged, Hungary. International Journal of Biometeorology 56. 1075-1088.
Crossref
Kántor, N., Unger, J. and Gulyás, Á. 2012b. Subjective estimations of thermal environment in recreational urban spaces - Part 2: international comparison. International Journal of Biometeorology 56. 1089-1101.
Crossref
Kovács, A., Unger, J., Gál, C.V. and Kántor, N. 2015. Adjustment of the thermal component of two tourism climatological assessment tools using thermal perception and preference surveys from Hungary. Theoretical and Applied Climatology 125. 113-130.
Crossref
Krüger, E.L., Drach, P., Emmanuel, R. and Corbella, O. 2013. Assessment of daytime outdoor comfort levels in and outside the urban area of Glasgow, UK. International Journal of Biometeorology 57. 521-533.
Crossref
Lai, D., Guo, D., Hou, Y., Lin, C. and Chen, Q. 2014. Studies of outdoor thermal comfort in northern China. Building and Environment 77. 110-118.
Crossref
Lin, T.-P. 2009. Thermal perception, adaptation and attendance in a public square in hot and humid regions. Building and Environment 44. 2017-2026.
Crossref
Lin, T.-P. and Matzarakis, A. 2008. Tourism climate and thermal comfort in Sun Moon Lake, Taiwan. International Journal of Biometeorology 52. 281-290.
Crossref
Lin, T.-P., de Dear, R. and Hwang. R.-L. 2011. Effect of thermal adaptation on seasonal outdoor thermal comfort. International Journal of Climatology 31. 302-312.
Crossref
Lin, T.-P., Matzarakis, A. and Hwang, R.-L. 2010. Shading effect on long-term outdoor thermal comfort. Building and Environment 45. 213-221.
Crossref
Lindner-Cendrowska, K. 2013. Assessment of bioclimatic conditions in cities for tourism and recreational purposes (a Warsaw case study). Geographia Polonica 86. 55-66.
Crossref
Matzarakis, A. and Mayer, H. 1996. Another kind of environmental stress: thermal stress. WHO Newsletter 18. 7-10.
Matzarakis, A., Mayer, H. and Iziomon, M.G. 1999. Application of a universal thermal index: physiological equivalent temperature. International Journal of Biometeorology 43. 76-84.
Crossref
Matzarakis, A., Rutz, F. and Mayer, H. 2010. Modelling radiation fluxes in simple and complex environments: basics of the RayMan model. International Journal of Biometeorology 54. 131-139.
Crossref
Mayer, H., Holst, J., Dostal, P., Imbery, F. and Schindler, D. 2008. Human thermal comfort in summer within an urban street canyon in Central Europe. Meteorologische Zeitschrift 17. 241-250.
Crossref
Müller, N., Kuttler, W. and Barlag, A.B. 2014. Counteracting urban climate change: adaptation measures and their effect on thermal comfort. Theoretical and Applied Climatology 115. 243-257.
Crossref
Nikolopoulou, M. and Lykoudis, S. 2006. Thermal comfort in outdoor urban spaces: Analysis across different European countries. Building and Environment 41. 1455-1470.
Crossref
Pearlmutter, D., Jiao, D. and Garb, Y. 2014. The relationship between bioclimatic thermal stress and subjective thermal sensation in pedestrian spaces. International Journal of Biometeorology 58. 2111-2127.
Crossref
Pongrácz, R., Bartholy, J. and Bartha, E.B. 2013. Analysis of projected changes in the occurrence of heat waves in Hungary. Advances in Geosciences 35. 115-122.
Crossref
Rupp, R.F., Vásquez, N.G. and Lamberts, R. 2015. A review of human thermal comfort in the built environment. Energy and Buildings 105. 178-205.
Crossref
Spagnolo, J. and de Dear, R. 2003. A field study of thermal comfort in outdoor and semi-outdoor environments in subtropical Sydney Australia. Building and Environment 38. 721-738.
Crossref
Tung, C.-H., Chen, C.-P., Tsai, K.-T., Kántor, N., Hwang, R.-L., Matzarakis, A. and Lin, T.-P. 2014. Outdoor thermal comfort characteristics in the hot and humid region from a gender perspective. International Journal of Biometeorology 58. 1927-1939.
Crossref
UNFPA 2011. The state of world population 2011. Report of the United Nations Population Fund. New York, UNFPA.
Unger, J. 1996. Heat island intensity with different meteorological conditions in a medium-sized town: Szeged, Hungary. Theoretical and Applied Climatology 54. 147-151.
Crossref
Unger, J., Lelovics, E. and Gál, T. 2014. Local Climate Zone mapping using GIS methods in Szeged. Hungarian Geographical Bulletin 63. 29-41.
Crossref
Yahia, M.W. and Johansson, E. 2013. Evaluating the behaviour of different thermal indices by investigating various outdoor urban environments in the hot dry city of Damascus, Syria. International Journal of Biometeorology 57. 615-630.
Crossref
Yang, W., Wong, N.H. and Jusuf, S.K. 2013a. Thermal comfort in outdoor urban spaces in Singapore. Building and Environment 5. 426-435.
Crossref
Yang, W., Wong, N.H. and Zhang, G. 2013b. A comparative analysis of human thermal conditions in outdoor urban spaces in the summer season in Singapore and Changsha, China. International Journal of Biometeorology 57. 895-907.
Crossref
Yin, J.F., Zheng, Y.F., Wu, R.J., Tan, J.G., Ye, D.X. and Wang, W. 2012. An analysis of infl uential factors on outdoor thermal comfort in summer. International Journal of Biometeorology 56. 941-948.
Crossref
Zeng, Y. and Dong, L. 2015. Thermal human biometeorological conditions and subjective thermal sensation in pedestrian streets in Chengdu, China. International Journal of Biometeorology 59. 99-108.
Crossref