873
Views
10
CrossRef citations to date
0
Altmetric
Original Articles

Drought and its effects on spring discharge regimes in Poland and Germany during the 2015 drought

&
Pages 741-751 | Received 11 May 2017, Accepted 21 Jan 2018, Published online: 16 Mar 2018

References

  • Apaydin, A., 2010. Response of groundwater to climate variation: fluctuations of groundwater level and well yields in the Halacli aquifer (Cankiri, Turkey). Environmental Monitoring and Assessment, 165, 653–663. doi:10.1007/s10661-009-0976-8
  • Bartholy, J. and Pongrácz, R., 2007. Regional analysis of extreme temperature and precipitation indices for the Carpathian Basin from 1946 to 2001. Global and Planetary Change, 57, 83–95. doi:10.1016/j.gloplacha.2006.11.002
  • Bayerisches Landesamt für Umwelt, 2016. Gewässerkundlicher Jahresbericht 2015. Augsburg: LfU.
  • Buczyński, S., 2017. Temporal variability of springs in catchment areas located in the Sudeten Mountains. Hydrology Research (in revision). doi:10.2166/nh.2017.229
  • Buczyński, S. and Wcisło, M., 2013. Predicting climate-induced changes in groundwater resourcess on the basis of hydrogeological model research: case study of the Carpathian flysch belt. Episodes, 36 (2), 105–114.
  • Castany, G., 1972. Poszukiwanie i eksploatacja wód podziemnych [Prospection and exploiting groundwater]. Warszawa: Wyd. Geol.
  • Custodio, E., 2002. Aquifer overexploitation: what does it mean? Hydrogeology Journal, 10 (2), 254–277. doi:10.1007/s10040-002-0188-6
  • Drużkowski, M., 2001. The influence of natural and human-related factors on the water circulation in the Carpathian foothills (southern Poland). Water Resources Management, 15 (2), 93–108. doi:10.1023/A:1012502702064
  • Eitzinger, J., et al., 2003. A simulation study of the effect of soil water balance and water stress on winter wheat production under different climate change scenarios. Agricultural Water Management, 61, 195–217. doi:10.1016/S0378-3774(03)00024-6
  • European Drought Observatory, 2015. Drought news August 2015[online]. (Based on data until 31 July 2015). Available from: http://edo.jrc.ec.europa.eu [Accessed 17 Jun 2016].
  • Fiorillo, F. and Guadagno, F.M., 2010a. Analysis of spring discharges during droughts: example from karst systems of southern Italy. In: B. Andreo, F. Carrasco, J. Durán, and J. LaMoreaux, eds. Advances in research in Karst Media. Environmental earth sciences. Berlin: Springer.
  • Fiorillo, F. and Guadagno, F.M., 2010b. Karst spring discharges analysis in relation to drought periods, using the SPI. Water Resources Management, 24, 1867–1884. doi:10.1007/s11269-009-9528-9
  • Gholami, V., Azodi, M., and Taghvaye Salimi, E., 2008. Modeling of karst and alluvial springs discharge in the central Alborz highlands and on the Caspian southern coast. Caspian Journal of Environmental Science, 6 (1), 41–45.
  • Korhonen, J. and Kuusisto, E., 2010. Long-term changes in the discharge regime in Finland. Hydrology Research, 41 (3–4), 253–268. doi:10.2166/nh.2010.112
  • Kowalczyk, A., 2016. Low groundwater: causes and effects (in Polish with English summary). Technol. Wody, 5, 4–10.
  • Kowalski, S., 1980. Charakterystyka hydrogeologiczna źródeł Gór Stołowych [Hydrogeological description of Góry Stołowe springs, in Polish]. Kwartalnik Geologiczny, 24 (4), 885–904.
  • Łabędzki, L., 2006. Agricultural drought. Overview problems and methods for monitoring and classification (in Polish with English summary). Water-Environment-Rural Areas, 17, 1–107.
  • Loáiciga, H.A., 2003. Climate change and ground water. Annals of the Association of American Geographers, 93 (1), 30–41. doi:10.1111/1467-8306.93103
  • Łupikasza, E. and Bielec-Bakowska, Z., 2005. Synoptic conditions of the thermal extreme days in Małopolsca in the second half of the 20th century (in Polish with English summary). Folia Geographica, XXXV–XXXVI, 93–112.
  • Ma, T., Wang, Y., and Guo, Q., 2004. Response of carbonate aquifer to climate change in northern China: a case study at the Shentou karst springs. Journal of Hydrology, 297, 274–284. doi:10.1016/j.jhydrol.2004.04.020
  • Maidment, D.R., 1993. Handbook of hydrology. New York: McGraw-Hill, Inc.
  • McKee, T.B., Doesken, N.J., and Kleist, J., 1993. The relationship of drought frequency and duration to time scales. In: Proceedings of the 8th Conference of Applied Climatology[online], 17−22 January 1993, Anaheim, CA, 179−184. Available from: http://www.droughtmanagement.info/literature/AMS_Relationship_Drought_Frequency_Duration_Time_Scales_1993.pdf [Accessed 24 Feb 2018].
  • McKee, T.B., Doesken, N.J., and Kleist, J., 1995. Drought monitoring with multiple time scales. In: Preprints of 9th Conference of Applied Climatology, 15−20 January 1995, Dallas, TX. Boston, MA: American Meteorological Society, 233−236.
  • Meehl, G.A., et al., 2007. Global climate projections. In: S. Solomon, ed. 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, UK: Cambridge University Press, 747–846.
  • Moniewski, P., 2015. Seasonal variability of discharge from selected springs in Central Europe. Episodes, 38 (3), 189–196.
  • Negi, G.C.S. and Joshi, V., 2004. Rainfall and spring discharge patterns in two small drainage catchments in the Western Himalayan Mountains, India. The Environmentalist, 24, 19–28. doi:10.1023/B:ENVR.0000046343.45118.78
  • Nyirfa, W.N. and Harron, B.H., 2001. Assessment of climate change on the agricultural resources of the Canadian prairies. Regina: Agriculture and Agri-Food Canada, Research report of the Prairie Adaptation Research Collaborative.
  • Radhakrishnan, N. and Elango, L., 2011. Study of influence of terrain and climatic factors on groundwater-level fluctuation in a minor river basin using GIS. Geo-Spatial Information Science, 14 (3), 190–197. doi:10.1007/s11806-011-0530-z
  • Rice, S.E., 2007. Springs as indicators of drought: physical and geochemical analyses in the Middle Verde river watershed, Arizona. Thesis (MSc). Northern Arizona University, USA.
  • Sadurski, A., ed., 2016. Hydrogeological annual report Polish Hydrogeological Survey (in Polish with English summary). Warszawa: Państwowy Instytut Badawczy.
  • Staśko, S., 1992. Hydrological drought, overexploitation or inconsistency (in Polish with English summary). Wrocław: Mat. Konf. Problemy Hydrogeol. Pd.-Zach. Polski, 97–102.
  • Staśko, S., Olichwer, T., and Tarka, R., 2008. Hydrogeologial drought in the Sudetes. Water resources management in the River Odra catchment (in Polish with English summary). Wrocław: Wyd. RZGW, 37–46.
  • Staśko, S. and Tarka, R., 2002. Recharge and groundwater discharge in mountainous areas, based on research in the Śnieżnik Massif (in Polish with English summary). Wrocław: Acta Univ. Wratisl. Prace Geol.-Mineral., 2528, 1–86.
  • Tomiałojć, L., 2003. Implications of climate change for nature conservation. In: J.L. Pyka, et al., eds. Man and climate in the 20th century. Wrocław: Acta Universitatis Wratislaviensis, 2542, Stu. Geo., 75, 31–50.
  • Woldeamlak, S.T., Batelaan, O., and De Smedt, F., 2007. Effects of climate change on the groundwater system in the Grote-Nete catchment, Belgium. Hydrogeology Journal, 15, 891–901. doi:10.1007/s10040-006-0145-x

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.