Geografie 2016, 121, 493-520
https://doi.org/10.37040/geografie2016121040493
Variability of snow cover and frost depth at the Potsdam station, Germany
References
1. 1987): Classification, seasonality and persistence of lowfrequency atmospheric circulation patterns. Mon. Wea. Rev., 115, 1083–1126.
< , A.G., LIVEZEY, R.E. (https://doi.org/10.1175/1520-0493(1987)115<1083:CSAPOL>2.0.CO;2>
2. BARTOLINI, E., CLAPS, P., D’ODORICO, P. (2010): Connecting European snow cover variability with large scale atmospheric patterns. Adv. Geosci., 26, 93–97.
<https://doi.org/10.5194/adgeo-26-93-2010>
3. 2004): Snow cover in Eastern Europe in relation to temperature, precipitation and circulation. Int. J. Climatol., 24, 591–601.
< , E. (https://doi.org/10.1002/joc.1014>
4. 2006): A White Christmas or A Christmas Thaw? – Changes in snow cover depth in German-Polish lowlands during the last decade of December against daily circulation patterns. Meteorol. Z., 15, 6, 579–583.
< , E. (https://doi.org/10.1127/0941-2948/2006/0165>
5. 2013): Heavy snow in Polish-German lowlands – Large scale synoptic reason and economic impacts. Weather and Clim. Extr., 2, 1–6.
< , E. (https://doi.org/10.1016/j.wace.2013.10.007>
6. 1997): Variations of snow depth and duration in the Swiss Alps over the last 50 years: links to changes in large-scale climatic forcings. Climatic Change, 36, 28 1–300.
, M. (
7. 2000): Northern hemisphere snow cover variability and change, 1915–97. Journal of Climate, 13, 2339–2355.
< , R.D. (https://doi.org/10.1175/1520-0442(2000)013<2339:NHSCVA>2.0.CO;2>
8. 1996): Interannual variability in reconstructed Canadian snow cover, 1915–1992. Journal of Climate, 9, 1299–1318.
< , R.D., GOODISON, B.E. (https://doi.org/10.1175/1520-0442(1996)009<1299:IVIRCS>2.0.CO;2>
9. BROWN, R.D., PETKOVA, N. (2007): Snow cover variability in Bulgarian mountainous regions, 1931–2000. Int. J. Climatol., 27, 1215–1229.
<https://doi.org/10.1002/joc.1468>
10. 1999): Atmospheric controls on Eurasian snow extent. Int. J. Climate, 19, 27–40.
< , M.P., SERREZE, M.C., ROBINSON, A.D. (https://doi.org/10.1002/(SICI)1097-0088(199901)19:1<27::AID-JOC346>3.0.CO;2-N>
11. 2011): Zmienność terminów początku i końca pokrywy śnieżnej o różnym czasie zalegania i ich uwarunkowania cyrkulacyjne. Prace i Studia Geograficzne, 47, 109–118.
, M. (
12. 2012): Częstość występowania i grubość pokrywy śnieżnej w Polsce. Acta Agrophysica, 19, 3, 501–514.
, M. (
13. 2002): Variability and trends in the annual snow-cover cycle in Northern Hemisphere land areas, 1972–2000. Hydrological Processes, 16, 3065–3077.
< , D.G. (https://doi.org/10.1002/hyp.1089>
14. 2004): Variability and trends in the duration and depth of snow cover in Poland in the 20th Century. Int. J. Climatol., 24, 1713–1727.
< , M. (https://doi.org/10.1002/joc.1093>
15. 1991): Die Schneeverhaltnisse in Nord- und Osttirol in der Periode 1895–1991. Mitteilungen der Osterreichischen Geographischen Gesellschaft, 133, 7–25.
, F., BAUMKIRCHEN, H. (
16. 1995): Decadal trends in the North Atlantic Oscillation: Regional temperatures and precipitation. Science, 269, 676–679.
< , J.W. (https://doi.org/10.1126/science.269.5224.676>
17. 2014): Thermal and snow conditions of winters and winter floods on example of Zagożdżonka River. Annals of Warsaw University of Life Sciences – SGGW Land Reclamation, 46, 1, 3–15.
< , A., HEJDUK, L. (https://doi.org/10.2478/sggw-2014-0001>
18. HORI, M.E., YASUNARI, T. (2003): NAO impact towards the springtime snow disappearance in the western Eurasian continent. Geoph. Res. Letters, 30, 19.
<https://doi.org/10.1029/2003GL018103>
19. IPCC (2013): Summary for Policymakers. In: Stocker, T.F., Qin, D., Plattner, G.-K., Tignor, M., Allen, S.K., Boschung, J., Nauels, A., Xia, Y. Bex, V., Midgley P.M. (eds.): Climate Change 2013: The Physical Science Basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change. University Press, Cambridge, United Kingdom and New York, NY, USA.
20. 1997): The impact of climate change on the snow cover pattern in Estonia. Climatic Change, 36, 65–77.
< , J. (https://doi.org/10.1023/A:1005304720412>
21. 2008): Temperature-related climate extremes in the Potsdam Observation Record. Geografie, 113, 4, 372–382.
, Z.W., JÓZEFCZYK, D. (
22. LAPIN, M., FAŠKO, P. (2005): Snow cover changes in the Little Carpathians in Slovakia. In Online Proceedings of ICAM2005, 28th International Conference on Alpine Meteorology, Zadar, Croatia, 23–27 May 2005, http://meteo.hr/ICAM2005/, 658–661.
23. 2003): Long-term snow climate trends of the Swiss Alps (1931–99). Int. J. Climat., 23, 733–750.
< , M., SCHNEEBELI, M. (https://doi.org/10.1002/joc.912>
24. 1998): Charakterystyka pokrywy śnieżnej w Łodzi w latach 1950–1989. Acta Universitatis Lodziensis, Folia Geographica Physica, 3, 265–277.
, M. (
25. NOWOSAD, M., BARTOSZEK, K. (2007): Wieloletnia zmienność grubości pokrywy śnieżnej w okolicy Lublina. In: Piotrowicz, K., Twardosz, R. (eds.): Wahania klimatu w różnych skalach przestrzennych i czasowych. Instytut Geografii I Gospodarki Przestrzennej, UJ Kraków, 411–421.
26. 2004): Snow cover variability and change in mountainous regions of Bulgaria, 1931–2000. Meteorol. Z., 13, 19–23.
< , N., KOLEVA, E., ALEXANDROV, V. (https://doi.org/10.1127/0941-2948/2004/0013-0019>
27. RADZIEJEWSKI, M., KUNDZEWICZ, Z.W. (2000): Hydrospect – Software for detecting changes in hydrological data. In: Robson, A., Kundzewicz, Z.W. (eds.): Detecting trend and other changes in hydrological data. App. 2, World Climate Programme – Applications and Services, World Meteorological Organization, Geneva.
28. RÄISÄNEN, J. (2008): Warmer climate: less or more snow? Clim Dyn, 30, 307–319.
<https://doi.org/10.1007/s00382-007-0289-y>
29. 2014): Snow cover variability in Lithuania over the last 50 years and its relationship with large-scale atmospheric circulation. Boreal Env. Res., 19, 337–335.
, E., KAŽYS, J., BUTKUTĖ, S., GEČAITĖ, I. (
30. 2003): Some selected snow climate trends in Slovakia with respect to altitude. Acta Met. Univ. Comenianae, XXXII, 17–27.
, M., FAŠKO, P., ŠŤASTNÝ, P. (
31. YOOJIN, K., KWANG-YUL, K. BAEK-MIN, K. (2012): Physical mechanisms of European winter snow cover variability and its relationship to the NAO. Clim. Dyn.
<https://doi.org/10.1007/s00382-012-1365-5>