Climate-driven changes to streamflow patterns in a groundwater-dominated catchment

Acta Geophysica - Tập 65 Số 4 - Trang 789-798 - 2017
Urszula Somorowska1
1Department of Hydrology, Institute of Physical Geography, Faculty of Geography and Regional Studies, University of Warsaw, Krakowskie Przedmiescie 30, 00-927, Warsaw, Poland

Tóm tắt

Từ khóa


Tài liệu tham khảo

Allan JD (2004) Landscapes and riverscapes: the influence of land use on stream ecosystems. Annu Rev Ecol Evol Syst 35:257–284

Banasik K, Hejduk L (2012) Long-term changes in runoff from a small agricultural catchment. Soil Water Res 7:64–72

Bates BC, Kundzewicz ZW, Wu S, Palutikof JP (2008) (eds) Climate change and water, Technical Paper of the Intergovernmental Panel on Climate Change, IPCC Secretariat, Geneva, 3–4

Berezowski T, Szcześniak M, Kardel I, Michałowski R, Okruszko T, Mezghani A, Piniewski M (2016) CPLFD-GDPT5: high-resolution gridded daily precipitation and temperature data set for two largest Polish river basins. Earth Syst Sci Data 8:127–139

Boulton AJ, Hancock PJ (2006) Rivers as groundwater-dependent ecosystems: a review of degrees of dependency, riverine processes and management implications. Aust J Bot 54:133–144

Buczyński S, Wcislo M (2013) Predicting climate-induced changes in groundwater resources on the basis of hydrogeological model research: case study of the Carpathian flysch belt. Episodes 36(2):105–114

Burt TM (2013) The silent river: the hydrological basis for river conservation. In: Sabater S, Elosegi A (eds) River conservation. Challenges and opportunities. Fundación BBVA, Bilbao, pp 39–60

Ehsanzadeh E, Ouarda TBMJ, Saley HM (2011) A simultaneous analysis of gradual and abrupt changes in Canadian low streamflows. Hydrol Process 25:727–739

Green TR et al (2011) Beneath the surface of global change: impacts of climate change on groundwater. J Hydrol 405(3–4):532–560

Gutry-Korycka M (2003) Long-term tendencies in water circulation in the Łasica river basin. Ecohydrol Hydrobiol 3(3):351–358

Gutry-Korycka M, Golebiowska I (2015) Hydrological alteration of an ice-marginal valley and its influence on the extent of historical floods. Hydrol Sci J 60(3):482–497

Hall J et al (2014) Understanding flood regime changes in Europe: a state-of-the-art assessment. Hydrol Earth Syst Sci 18:2735–2772

Hannaford J, Buys G (2012) Trends in seasonal river flow regimes in the UK. J Hydrol 475:158–174

Haylock MR et al (2008) A European daily high-resolution gridded dataset of surface temperature and precipitation. JGR 113:D20119

Helsel DR, Hirsch RM (2002) Statistical methods in water resources. Techniques of Water Resources Investigations, Book 4, Chapter A3, USGS

Jarvis A, Reuter HI, Nelson A, Guevara E (2008) Hole-filled SRTM for the globe Version 4, CGIAR-CSI SRTM 90 m Database. Source: http://srtm.csi.cgiar.org

Jokiel P (2016) Przepływy i odpływy maksymalne w środkowej Polsce. Geogr Tour 4(2):7–21

Kaczmarek Z (2003) The impact climate variability on flood risk in Poland. Risk Anal 23:559–566

Kløve B et al (2014) Climate change impacts on groundwater and dependent ecosystems. J Hydrol 518:250–266

Kopeć D, Michalska-Hejduk D, Krogulec E (2013) The relationship between vegetation and ground water levels as an indicator of spontaneous wet land restoration. Ecol Eng 57:242–251

Kubrak J, Mioduszewski W, Kowalewski Z, Okruszko T (2011) Możliwości wykorzystania istniejących i projektowanych budowli na Kanale Łasica do kształtowania warunków uwilgotnienia gleb w Kampinoskim Parku Narodowym. Woda Środowisko Obszary Wiejskie 11(3):123–135

Kumar CP (2012) Climate change and its impacts on the groundwater resources. Int J Eng Sci 1:43–60

Kundzewicz ZW (2004) Editorial—searching for change in hydrological data. Hydrol Sci J 49(1):3–6

Kundzewicz ZW, Radziejewski M (2006) Methodologies for trend detection. In: Demuth S, Gustard A, Planos E, Scatena F, Servat E (eds) Climate variability and change—hydrological impacts. Proceedings of the fifth FRIEND World Conference, Havana, Cuba 2006, vol 308. IAHS Publications, Wallingford, pp 538–549

Kundzewicz ZW, Robson AJ (2004) Change detection in river flow records—a review of the methodology. Hydrol Sci J 49(1):7–19

Loáiciga HA (2003) Climate change and ground water. Ann Assoc Am Geogr 93(1):30–41

Meresa HK, Osuch M, Romanowicz R (2016) Hydro-meteorological drought projections into the 21-st century for selected polish catchments. Water 8(5):206

Mioduszewski W, Kowalewski Z, Żurawski R, Stankiewicz J (2010) Drainage system in the Kampinos National Park. J Water Land Dev 14:83–95

Osuch M, Romanowicz RJ, Lawrence D, Wong WK (2016) Trends in projections of standardized precipitation indices in a future climate in Poland. Hydrol Earth Syst Sci 20:1947–1969

Piniewski M, Gottschalk L, Krasovskaia I, Choromanski J (2012) A GIS-based model for testing effects of restoration measures in wetlands: a case study in the Kampinos National Park, Poland. Ecol Eng 44:25–35

Pociask-Karteczka J (2011) River runoff response to climate changes in Poland (East-Central Europe). IAHS Publ 344:182–187

Poff NL et al (1997) The natural flow regime: a paradigm for conservation and restoration of riverine ecosystems. Bioscience 47:769–784

Pumo D, Caracciolo D, Viola F, Noto LV (2016) Climate change effects on the hydrological regime of small non-perennial 5 river basins. Sci Total Environ 542:76–92

Radziejewski M, Kundzewicz ZW (2004a) Detectability of changes in hydrological records. Hydrol Sci J 49(1):39–51

Radziejewski M, Kundzewicz ZW (2004b) Development, use and application of the HYDROSPECT data analysis system for the detection of changes in hydrological time-series for use in WCP-Water and National Hydrological Services, WCASP-65, Hydrospect, Version 2.0. User’s manual, WMO, Geneva

Raes D (2012) The ETo Calculator. Reference Manual Version 3.2. FAO UN, Rome, Italy

Rodionov SN, Overland JE (2005) Application of a sequential regime shift detection method to the Bering Sea ecosystem. ICES J Mar Sci 62:328–332

Romanowicz RJ et al (2016) Climate change impact on hydrological extremes: preliminary results from the Polish-Norwegian Project. Acta Geophys 64(2):477–509

Schneider C, Laizé CLR, Acreman MC, Flörke M (2013) How will climate change modify river flow regimes in Europe? Hydrol Earth Syst Sci 17(1):325–339

Sear DA, Armitage PD, Dawson FDH (1999) Groundwater dominated rivers. Hydrol Process 11:255–276

Somorowska U (2006) Wpływ stanu retencji podziemnej na proces odpływu w zlewni nizinnej. Wydawnictwa Uniwersytetu Warszawskiego, Warszawa, pp 1–151

Stahl K et al (2010) Streamflow trends in Europe: evidence from a dataset of near-natural catchments. Hydrol Earth Syst Sci 14:2367–2382

Stahl K, Tallaksen LM, Hannaford J, van Lanen HAJ (2012) Filling the white space on maps of European runoff trends: estimates from a multi-model ensemble. Hydrol Earth Syst Sci 16:2035–2047

Szymczak T (2005) Long-term trends in runoff from small lowland catchements. J Water Land Dev 9:35–57

Tetzlaff D et al (2013) Catchments on the cusp? Structural and functional change in northern ecohydrology. Hydrol Process 27:766–774

Theil H (1950) A rank-invariant method of linear and polynomial regression analysis, 1, 2, and 3. Proc R Neth Acad Sci 53:386–392 53:521–525 53:1397–1412

Whitfield PH et al (2012) Reference hydrologic networks I. The status and potential future directions of national reference hydrologic networks for detecting trends. Hydrol Sci J 57:1568–1579

Wrzesiński D (2010a) Detekcja zmian reżimu hydrologicznego Warty w profilu Poznania w latach 1822–2005. Studia i Prace z Geografii i Geologii 12:135–151

Wrzesiński D (2010b) Przestrzenne zróżnicowanie stabilności reżimu odpływu rzek europejskich. Studia i Prace z Geografii i Geologii 3:1–220

Wrzesiński D (2016) Use of Entropy in the Assessment of Uncertainty of River Runoff Regime in Poland. Acta Geophys 64(5):1825–1839

Wrzesiński D, Tomaszewski P (2010) Stabilność elementów hydrometeorologicznych w Polsce w latach 1951–2000. Studia i Prace z Geografii i Geologii 12:169–185

Yang Z, Zhou Y, Wenninger J, Uhlenbrook S (2012) The causes of flow regime shifts in the semi-arid Hailiutu River, Northwest China. Hydrol Earth Syst Sci 16:87–103