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RCIN and OZwRCIN projects

Object

Title: Heat- and cold-related mortality in the North-East of Poland as an example of the socio-economic effects of extreme hydrometeorological events in the Polish Lowland

Creator:

Kuchcik, Magdalena ; Degórski, Marek

Date issued/created:

2009

Resource type:

Text

Subtitle:

Geographia Polonica Vol. 82 No. 1 (2009)

Publisher:

IGiPZ PAN

Place of publishing:

Warszawa

Description:

24 cm

Type of object:

Journal/Article

Abstract:

This article looks at certain socioeconomic consequences of extreme hydrometeorological phenomena in the Polish Lowland, e.g. floods, droughts, hurricanes, heat and cold waves that have all become more intense in Poland over recent years. The particular focus is on the impact of extreme high temperature and severe cold events on socio-medical parameters such as mortality. The analysis is especially concerned with increased daily numbers of deaths in 3 large urban centers located in northeast Poland.

References:

1. Degórski, M. (1990), Warunki siedliskowe kateny ekosystemów leśnych na Wysoczyźnie Rawskiej, ze szczególnym uwzględnieniem dynamiki wodno-troficznych właściwości gleb [Habitat conditions in the forest ecosystems catena situated on the Rawa Plateau, with particular regard to the dynamics of hydrotrophic properties], Dokumentacja Geograficzna, 5-6, Warszawa.
2. ECA&D (European Climate Assessment & Dataset), available at <http://eca.knmi.nl/indicesextremes>.
3. IPCC (2007), Summary for Policymakers, in Solomon S., Qin, D., Manning, M., Chen, Z., Marquis, M., Averyt, K.B., Tignor, M., and Miller, H.L. (eds.), Climate Change 2007: The Physical Science Basis. Contribution of Working Group I to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change, Cambridge University Press, Cambridge, United Kingdom and New York, NY, USA
4. Kalkstein, L.S. and Valimont, K. (1986), An evaluation of summer discomfort in the United States using a Relative Climatological Index, Bulletin of the American Meteorological Society, 67, 7: 842-848.
http://dx.doi.org/10.1175/1520-0477(1986)067<0842:AEOSDI>2.0.CO;2 -
5. Kosatsky, T. (2005), The 2003 European heat waves, Archives: Eurosurveillance monthly releases, 10, 7-8: 148-149.
6. Kozłowska-Szczęsna, T., Krawczyk, B. and Kuchcik, M. (2004), Wpływ środowiska atmosferycznego na zdrowie i samopoczucie człowieka [The influence of the atmospheric environment on human health and well-being], Monografie, IGiPZ PAN, 4, Warszawa.
7. Kuchcik, M. (2001), Mortality in Warsaw: is there any connection with weather and air pollution? Geographia Polonica 74, 1: 29-45.
8. Kuchcik, M. (2006), Fale upałów w Polsce w latach 1993-2002 [Heat waves in Poland over the period 1993-2002], Przegląd Geograficzny, 78, 3: 397-412.
9. Kuchcik, M. and Błażejczyk, K. 2005, Regional differentiation of heat waves in Poland and their impact on mortality. DWD, Annalen der Meteorologie, 41, 1: 415-418.
10. Kyselý, J. (2004), Mortality and displaced mortality during heat waves in the Czech Republic, International Journal of Biotemeteorology, 49, 2: 91-105.
http://dx.doi.org/10.1007/s00484-004-0218-2 -
11. Michelozzi, P., De Donato, F., Accetta, G., Forastiere, F., D'Ovidio, M., Perucci, C. and Kalkstein, L. S. (2004), Impact of heat waves on mortality – Rome, Italy June-August 2003, Morbidity and Mortality Weekly Report, 53, 17: 369-371.
12. PRUDENCE (Prediction of Regional scenarios and Uncertainties for Defining European Climate change risks and Effects), available at < http://prudence.dmi.dk/>.
13. Przybylak R., Vizi Z., Araźny A., Kejna M., Maszewski R. and Uscka-Kowalkowska J. (2006), Indeks ekstremalności klimatu Europy Środkowej w okresie 1951-2000 [The index of extremes of the climate of Central Europe in the period 1951-2000], in Gierszewski, P., Karasiewicz, T. (eds.), Idee i praktyczny uniwersalizm geografii – geografia fizyczna, Dokumentacja Geograficzna, 32: 240-248.
14. Sartor, F., Snacken, R., Demuth, C. and Walckiers, D. (1995), Temperature, ambient ozone levels, and mortality during summer, 1994, in Belgium, Environmental Research, 70: 105-113.
http://dx.doi.org/10.1006/enrs.1995.1054 -
15. Steadman, R.G. (1984), A universal scale of Apparent Temperature, Journal of Applied Meteorology, 23, 12: 1674-1687.
http://dx.doi.org/10.1175/1520-0450(1984)023<1674:AUSOAT>2.0.CO;2 -
16. UNEP (United Nations Environment Programme) (2004), Impacts of the summer 2003 heatwave in Europe, <www.grid.unep.ch/product/publication/download/ew_heat_wave.en.pdf.>.
17. WHO (2003), The health impacts of the 2003 summer heatwaves. Briefing note for the Delegations of the 53rd session of the WHO Regional Committee for Europe, pp.12, <http://www.euro.who.int/document/Gch/HEAT-WAVES%20RC3.pdf>.

Relation:

Geographia Polonica

Volume:

82

Issue:

1

Start page:

69

End page:

78

Detailed Resource Type:

Article

Format:

File size 1,4 MB ; application/pdf

Resource Identifier:

oai:rcin.org.pl:55502 ; 0016-7282 ; 10.7163/GPol.2009.1.6

Source:

CBGiOS. IGiPZ PAN, call nos.: Cz.2085, Cz.2173, Cz.2406 ; click here to follow the link

Language:

eng

Rights:

Rights Reserved - Free Access

Terms of use:

Copyright-protected material. May be used within the limits of statutory user freedoms

Digitizing institution:

Institute of Geography and Spatial Organization of the Polish Academy of Sciences

Original in:

Central Library of Geography and Environmental Protection. Institute of Geography and Spatial Organization PAS

Projects co-financed by:

European Union. European Regional Development Fund ; Programme Innovative Economy, 2010-2014, Priority Axis 2. R&D infrastructure

Access:

Open

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