Have a personal or library account? Click to login
Determinants of change in the duration of ice phenomena on the Vistula River in Toruń Cover

Determinants of change in the duration of ice phenomena on the Vistula River in Toruń

Open Access
|Apr 2015

References

  1. Anders, D.D., 1995. Frazil generation and ice floe formation on a regulated river, 8th Workshop on the Hydraulics of Ice Covered Rivers Kamloops, British Columbia, 59-75. http://cripe.civil.ualberta.ca/Downloads/08th_Workshop/Andres_1995.pdf
  2. Babiński, Z., Habel, M., 2013. Hydromorphological conditions of the lower Vistula in the development of navigation and hydropower. Acta Energetica, 2/15, 83-90, doi: 10.12736/issn.2300-3022.2013206.10.12736/issn.2300-3022.2013206
  3. Beltaos, S., 1997. Onset of river ice breakup. Cold Regions Science and Technology, 25, 183-196.10.1016/S0165-232X(96)00011-0
  4. Boehrer, B., Tibke, M., Suhr, U., 2004. Frontal progression of a juxtaposed ice cover on the Elbe river. Journal of Hydrology, 288, 258-263, doi: 10.1016/j.jhydrol.2003.10.009.10.1016/j.jhydrol.2003.10.009
  5. Cyberski, J., Grześ, M., Gutry-Korycka, M., Nachlik, E., Kundzewicz, Z.W., 2006. History of floods on the River Vistula. Hydrological Sciences Journal, 51:5, 799-817, doi: 10.1623/hysj.51.5.799.10.1623/hysj.51.5.799
  6. Gołek, J., 1964. Ice phenomena on the Polish rivers. Works of State Hydrological-Meteorological Institute, 63. (In Polish.)
  7. Gorączko, M., 2013. Variability of ice phenomena on the Vistula River in the vicinity of Bydgoszcz. Scientific Review Engineering and Environmental Sciences, 62, 382-388. (In Polish.) Grześ, M., 1991. Ice jam and floods on the lower Vistula River.
  8. Mechanism and processes, Institute of Geography and Spatial Organization, Polish Academy of Science, Warsaw. (In Polish.)
  9. Grześ, M., Pawłowski, B., 2012. Hydromorphological conditions of ice-breaking on the Vistula River from Włocławek Barrage to the river mouth, taking into account the winter season of 2011/2012. Regional Board of Water Management, Gdańsk (In Polish.)
  10. Hattermann, F.F., Kundzewicz, Z.W., Huang, S., Werner, P., 2013. Climatological Drivers of Changes in Flood Hazard in Germany. Acta Geophysica, 61, 463-477, doi: 10.2478/s11600-012-0070-4.10.2478/s11600-012-0070-4
  11. Hodgkins, G.A., Dudley, R.W., Huntington, T.G., 2005. Changes in the number and timing of days of ice-affected flow on northern New England rivers, 1930-2000. Climatic Change, 71, 319-340, doi: 10.1007/s10584-005-5926-z.10.1007/s10584-005-5926-z
  12. Horváth, S., 1960. A csatornázás hatása a magyar Duna jégjárására. [The effects of river channeling on river ice regime]. Vízügyi Közlemények, 42/4, 527-570. (In Hungarian.) http://www.ipcc.ch/publications_and_data/ar4/syr/en/spms1.html
  13. Hurrell, J.W., 1995. Decadal trends in the North Atlantic oscillation: regional temperatures and precipitation. Science, 269, 5224, 676-679, doi: 10.1126/science.269.5224.676.10.1126/science.269.5224.67617758812
  14. Jiang, Y., Dong, W., Yang, S., Ma, J., 2008. Long-term changes in ice phenology of the Yellow River in the past decades. Journal of Climate, 21, 4879-4886.10.1175/2008JCLI1872.1
  15. Klavins, M., Briede, A., Rodinov, V., 2009. Long term changes in ice and discharge regime of rivers in the Baltic region in relation to climatic variability. Climatic Change, 95, 485-498.10.1007/s10584-009-9567-5
  16. Kuusisto, E., Elo, A.-R., 1998. Lake and river ice variables as climate indicators in Northern Europe. Internationale Vereinigung fur Theoretische und Angewandte Limnologie, Verhandlungen, 2761-2764.10.1080/03680770.1998.11898168
  17. Kundzewicz, Z.W., Huang, S., 2010. Seasonal Temperature Extremes in Potsdam. Acta Geophysica, 55, 1115-1133, doi: 10.2478/s11600-010-0026-5.10.2478/s11600-010-0026-5
  18. Lambor, J., 1959. Ice phenomena on inland waterways in Poland. Works and Studies of the Committee of the Water Management, Hydrological Works. II, 1, 121-138. (In Polish.)
  19. Magnuson, J.J., Robertson, D.M., Benson, B.J., Wynne, R.H., Livingstone, D.M., Arai, T., Assel, R.A., Barry, R.G., Card, V., Kuusisto, E., Granin, N.G., Prowse, T.D., Stewart, K.M., Vuglinski, V.S., 2000. Historical Trends in Lake and River Ice Cover in the Northern Hemisphere. Science, 289, 5482, 1743-1746, doi: 10.1126/science.289.5485.1743.10.1126/science.289.5485.1743
  20. Majewski, W., 1987. Influence of ice cover on the characteristics of run-of-river reservoirs on lowland rivers on the example of Włocławek Reservoir. Institute of Hydro-Engineering, Gdańsk. (In Polish.)
  21. Majewski, W., 2007. Flow in open channels under the influence of ice cover. Acta Geophysica, 55, 11-22, doi: 10.2478/s11600-006-0041-8.10.2478/s11600-006-0041-8
  22. Makowski, J., 1998. Floodbanks of the Lower Vistula: historical forming, current state, work in the time of large swelling of the river. Vol. 2. Institute of Hydroengineering of Polish Academy of Sciences, Toruń - Biała Góra. (In Polish.)
  23. Marszelewski, W., Skowron, R., 2006. Ice cover an indicator of winter air temperature changes: case study of the Polish Lowland lakes. Hydrological Sciences Journal, 52, 336-349.10.1623/hysj.51.2.336
  24. Michel, B., 1971. Winter regime of rivers and lakes. Cold regions research and engineering laboratory. Corps of Engineers NTIS, Springfield, VA, USA.
  25. Mikulski, Z., 1965. About oldest systematic observation of gauge height of water level on Polish land. Review of Geophysics, 10, 2, 153-169. (In Polish.)
  26. Paromov, V.V, Shantykowa, L.N., 2010. Change of ice regime characteristics on the rivers in the Upper Yenisei basin. Ice and Snow, 2 (110), 51-55. (In Russian.) Pawłowski, B., 2009. Long-Term variability in the course of ice phenomena on the Vistula River in Toruń, Bulletin of Geography.
  27. Nicolaus Copernicus University, Physical Geography Series, 1, 91-102.
  28. Pawłowski, B., 2013. The course of the ice phenomena on the Lower Vistula in the winter 2013, on the stretch upper Włocławek Reservoir. Water Management, 11, 420-423. (In Polish.)
  29. Prowse, T.D., Beltaos, S., 2002. Climatic control of river-ice hydrology: a review. Hydrol. Process., 16, 805-822, doi: 10.1002/hyp.369.10.1002/hyp.369
  30. Przybylak, R., Maszewski, R., Pospieszyńska, A., 2012. The influence of atmospheric circulation on extreme values o air temperature in the Bydgosko-Toruński Region in the period 1881-2005. Role of the circulation of the atmosphere in the forming of the climate, Silesian University, 217-236.
  31. Smith, L.C., 2000. Trends in Russian Arctic river-ice formation and breakup, 1917 to 1994. Physical Geography, 21, 1, 46-56.10.1080/02723646.2000.10642698
  32. Soja, T., Wiejaczka, Ł., 2013. The impact of a reservoir on the physicochemical properties of water in a mountain river. Water and Environment Journal, doi:10.1111/wej.1205910.1111/wej.12059
  33. Takács, K., Kern, Z., Nagy, B., 2012. Impacts of anthropogenic effects on river ice regime: Examples from Eastern Central Europe. Quaternary International, 1-8, http://dx.doi.org/10.1016/j.quaint.2012.12.010.10.1016/j.quaint.2012.12.010
  34. Wrycza, T., 1998. Ice-breaking. Monolit, Gdańsk - Gdynia. (In Polish.) www.tutiempo.net
  35. Yoo, J., D’Odorico, P., 2002. Trends and fluctuations in the dates of ice break-up of lakes and rivers in Northern Europe: The effect of the North Atlantic Oscillation. Journal of Hydrology, 268, 100-112. 10.1016/S0022-1694(02)00161-0
DOI: https://doi.org/10.1515/johh-2015-0017 | Journal eISSN: 1338-4333 | Journal ISSN: 0042-790X
Language: English
Page range: 145 - 153
Submitted on: Jun 2, 2014
Accepted on: Dec 23, 2014
Published on: Apr 7, 2015
Published by: Slovak Academy of Sciences, Institute of Hydrology; Institute of Hydrodynamics, Czech Academy of Sciences, Prague
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2015 Bogusław Pawłowski, published by Slovak Academy of Sciences, Institute of Hydrology; Institute of Hydrodynamics, Czech Academy of Sciences, Prague
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.