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Erschienen in: Environmental Earth Sciences 12/2014

01.12.2014 | Thematic Issue

Inverse determination of groundwater inflow using water balance simulations

verfasst von: P. Körner, T. Pluntke, A. Sachse, N. Böttcher, D. Naumov, O. Kolditz, C. Bernhofer

Erschienen in: Environmental Earth Sciences | Ausgabe 12/2014

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Abstract

The IWAS project Ukraine deals among others with the water balance in the headwaters of the river Western Bug. During investigations in the sub-catchment Sasiv, a gap in the water balance was detected by Pluntke et al. (Environ Earth Sci, this issue, 2014). The runoff of this sub-catchment is significantly higher than that of any other catchment in the region. Unexpectedly, in 2011 the runoff was observed to be higher than precipitation. We hypothesize additional subsurface flow in the Sasiv catchment from adjacent aquifers. The hydrological model BROOK90 was used to model water flows. In addition to publicly available meteorological input data from the NOAA and ECA&C databases, own precipitation measurements in Sasiv were used. The mean seasonal leaf area index (LAI)—cycle of forest, grass, and agricultural land was determined using satellite data. To improve the output quality, the model was adapted for the superior catchment Kamianka-Buzka/Western Bug (2,500 km2). It was calibrated for the period 2001–2006 and validated for 2007–2011. Infiltration and drainage parameters were unknown, and were therefore calibrated applying Monte Carlo simulations. It was not possible to calibrate the sub-catchment Sasiv (107 km2) due to high deviations of the natural water balance. Thus, the model was calibrated for the superior catchment and afterwards applied to the Sasiv catchment. The monthly estimated inflow was calculated based on, first, a constant term, which is a fixed monthly inflow with its minimum in October (22 mm) and its maximum in May (41 mm). Secondly, a dynamic term was added. Here, different dependencies were tested, e.g., precipitation, soil moisture, groundwater level, and modelled runoff. The best coefficient of determination was achieved using a monthly modelled runoff from the 4 months before the current time. The model showed a good performance in the validation period (R 2 = 0.88). On average, the runoff observed in Sasiv consists of 60 percent groundwater inflow. At the gauge Kamianka-Buzka, this fraction is still about 5 %. The determined LAI cycles and the usage of an additional precipitation station near Sasiv significantly improved the quality of the water balance modelling in the Sasiv sub-catchment. The presented hydrological model approach was extended by hydrogeological simulations to enhance the understanding of processes in groundwater and surface water interactions. Therefore, it was a special challenge to model with scarce data the heterogeneous hydrogeological character of the catchment. The multi-level calibration enables a comprehensible estimation of annual groundwater recharge rates (30–700 mm) of the shallow quaternary aquifer, which is drained by the river Bug system.

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Literatur
Zurück zum Zitat Borevsky (1976) Бopeвcкий Б. B., Xopдикaйнeн M. A., Язвин Л. C. “Paзвeдкa и oцeнкa экcплyaтaциoнныx зaпacoв мecтopoждeний пoдзeмныx вoд в тpeщиннo-кapcтoвыx плacтax.” Heдpa, Mocквa 1976 Borevsky (1976) Бopeвcкий Б. B., Xopдикaйнeн M. A., Язвин Л. C. “Paзвeдкa и oцeнкa экcплyaтaциoнныx зaпacoв мecтopoждeний пoдзeмныx вoд в тpeщиннo-кapcтoвыx плacтax.” Heдpa, Mocквa 1976
Zurück zum Zitat Chaly P (2011) Hydrogeological problems of the Carpathian region in the Liviv province. In: Nalecz T (ed) Groundwater management in the East of the European Union, NATO Science for peace and security series C: Environmental Security. doi:10.1007/978-90-481-9534-3_8 Chaly P (2011) Hydrogeological problems of the Carpathian region in the Liviv province. In: Nalecz T (ed) Groundwater management in the East of the European Union, NATO Science for peace and security series C: Environmental Security. doi:10.​1007/​978-90-481-9534-3_​8
Zurück zum Zitat Cohen WB, Maiersperger TK, Yang Z et al (2003) Comparisons of land cover and LAI estimates derived from ETM+ and MODIS for four sites in North America: a quality assessment of 2000/2001 provisional MODIS products. Remote Sens Environ 88:233–255. doi:10.1016/j.rse.2003.06.006 CrossRef Cohen WB, Maiersperger TK, Yang Z et al (2003) Comparisons of land cover and LAI estimates derived from ETM+ and MODIS for four sites in North America: a quality assessment of 2000/2001 provisional MODIS products. Remote Sens Environ 88:233–255. doi:10.​1016/​j.​rse.​2003.​06.​006 CrossRef
Zurück zum Zitat Combalicer EA, Cruz RVO, Lee SH, Im S (2010) Modelling hydrologic processes distribution in a tropical forest watershed in the Philippines. J Trop For Sci 22:155–169 Combalicer EA, Cruz RVO, Lee SH, Im S (2010) Modelling hydrologic processes distribution in a tropical forest watershed in the Philippines. J Trop For Sci 22:155–169
Zurück zum Zitat Doherty J, Hunt RJ (2010) Approaches to highly parameterized inversion: a guide to using PEST for groundwater-model calibration. US Geol Surv Sci Investig Rep 5169:60 Doherty J, Hunt RJ (2010) Approaches to highly parameterized inversion: a guide to using PEST for groundwater-model calibration. US Geol Surv Sci Investig Rep 5169:60
Zurück zum Zitat Ertel A-M, Lupo A, Scheifhacken N et al (2012) Heavy load and high potential: anthropogenic pressures and their impacts on the water quality along a lowland river (Western Bug, Ukraine). Environ Earth Sci 65:1459–1473. doi:10.1007/s12665-011-1289-0 CrossRef Ertel A-M, Lupo A, Scheifhacken N et al (2012) Heavy load and high potential: anthropogenic pressures and their impacts on the water quality along a lowland river (Western Bug, Ukraine). Environ Earth Sci 65:1459–1473. doi:10.​1007/​s12665-011-1289-0 CrossRef
Zurück zum Zitat Federer C (2002) BROOK90-A simulation model for evaporation, soil water, and streamflow. Documentation for versions 4 and 3.2/3/4. Compass Brook, Durham, New Hampshire Federer C (2002) BROOK90-A simulation model for evaporation, soil water, and streamflow. Documentation for versions 4 and 3.2/3/4. Compass Brook, Durham, New Hampshire
Zurück zum Zitat Fensholt R, Sandholt I, Rasmussen MS (2004) Evaluation of MODIS LAI, fAPAR and the relation between fAPAR and NDVI in a semi-arid environment using in situ measurements. Remote Sens Environ 91:490–507. doi:10.1016/j.rse.2004.04.009 CrossRef Fensholt R, Sandholt I, Rasmussen MS (2004) Evaluation of MODIS LAI, fAPAR and the relation between fAPAR and NDVI in a semi-arid environment using in situ measurements. Remote Sens Environ 91:490–507. doi:10.​1016/​j.​rse.​2004.​04.​009 CrossRef
Zurück zum Zitat Hinterding A (2002) Entwicklung hybrider Interpolationsverfahren für den automatisierten Betrieb am Beispiel meteorologischer Grössen. IfGi, Institur für Geoinformatik Westfählische Wilhelms-Universität Münster Hinterding A (2002) Entwicklung hybrider Interpolationsverfahren für den automatisierten Betrieb am Beispiel meteorologischer Grössen. IfGi, Institur für Geoinformatik Westfählische Wilhelms-Universität Münster
Zurück zum Zitat IEG et al (2013) Institute of Ecology and Geography, Academy of Science of Moldova (Moldova), Ukrainian Center of Environmental and Water Projects, Academy of Sciences (Ukraine) (2013) River Basin Management Plan for Prut Pilot Basin in the territories of Ukraine and Moldova IEG et al (2013) Institute of Ecology and Geography, Academy of Science of Moldova (Moldova), Ukrainian Center of Environmental and Water Projects, Academy of Sciences (Ukraine) (2013) River Basin Management Plan for Prut Pilot Basin in the territories of Ukraine and Moldova
Zurück zum Zitat Kim S-H, Park J-H, Woo C-S, Lee K-S (2005) Analysis of temporal variability of MODIS leaf area index (LAI) product over temperate forest in Korea. IEEE, pp 4343–4346 Kim S-H, Park J-H, Woo C-S, Lee K-S (2005) Analysis of temporal variability of MODIS leaf area index (LAI) product over temperate forest in Korea. IEEE, pp 4343–4346
Zurück zum Zitat Klimchouk AB and Andrejchuk V (2003) Karst breakdown mechanism from observations in the gypsum caves of the western Ukraine: implications for subsidence hazard assessment. In: AB Klimchouk et al (eds) Speleogenesis: evolution of Karst Aquifers 1 (1), pp 1–20 Klimchouk AB and Andrejchuk V (2003) Karst breakdown mechanism from observations in the gypsum caves of the western Ukraine: implications for subsidence hazard assessment. In: AB Klimchouk et al (eds) Speleogenesis: evolution of Karst Aquifers 1 (1), pp 1–20
Zurück zum Zitat Knyazikhin Y, Glassy J, Privette J et al (1999) MODIS leaf area index (LAI) and fraction of photosynthetically active radiation absorbed by vegetation (FPAR) product (MOD15) algorithm theoretical basis document. Theoretical Basis Document, NASA Goddard Space Flight Center, Greenbelt, MD 20771 Knyazikhin Y, Glassy J, Privette J et al (1999) MODIS leaf area index (LAI) and fraction of photosynthetically active radiation absorbed by vegetation (FPAR) product (MOD15) algorithm theoretical basis document. Theoretical Basis Document, NASA Goddard Space Flight Center, Greenbelt, MD 20771
Zurück zum Zitat Lipinskyy VM, Dyachuk VA, Babichenko VM (2003) Climate of Ukraine. Rayevskyy Publishing, Kyiv Lipinskyy VM, Dyachuk VA, Babichenko VM (2003) Climate of Ukraine. Rayevskyy Publishing, Kyiv
Zurück zum Zitat Moriasi DN, Arnold JG, Van Liew MW, Bingner MW, Harmel RD, Veith TL (2007) Model evaluation guidelines for systematic quantification of accuracy in watershed simulations. Trans ASABE 50:885–900 Moriasi DN, Arnold JG, Van Liew MW, Bingner MW, Harmel RD, Veith TL (2007) Model evaluation guidelines for systematic quantification of accuracy in watershed simulations. Trans ASABE 50:885–900
Zurück zum Zitat Moulin L, Gaume E, Obled C (2009) Uncertainties on mean areal precipitation: assessment and impact on streamflow simulations. Hydrol Earth Syst Sci 13:99–114CrossRef Moulin L, Gaume E, Obled C (2009) Uncertainties on mean areal precipitation: assessment and impact on streamflow simulations. Hydrol Earth Syst Sci 13:99–114CrossRef
Zurück zum Zitat Nalecz, T (2011) Sustainable use and protection of groundwater resources—transboundary water management–Belarus, Poland, Ukraine project as a step for establishing integrated transboundary groundwater management east of EU. In: Nalecz T (ed) Groundwater Management in the East of the European Union, NATO science for peace and security series C: Environmental Security. doi:10.1007/978-90-481-9534-3_1 Nalecz, T (2011) Sustainable use and protection of groundwater resources—transboundary water management–Belarus, Poland, Ukraine project as a step for establishing integrated transboundary groundwater management east of EU. In: Nalecz T (ed) Groundwater Management in the East of the European Union, NATO science for peace and security series C: Environmental Security. doi:10.​1007/​978-90-481-9534-3_​1
Zurück zum Zitat Ognianik N, Paramonova N (2001) Estimation of real and predicted infiltration recharge for the irrigated area in southern Ukraine. In: Gehrels H, Peters NE, Hoehn E, Jensen K, Leibundgut C, Griffioen J, Webb B, Zaadnoordijk WJ (eds) Impact of Human Activity on Groundwater Dynamics (Proceedings of 6th IAHS Scientific Assembly, Maastricht, The Netherlands, July 2001). IAHS Publication 269, pp 95–98 Ognianik N, Paramonova N (2001) Estimation of real and predicted infiltration recharge for the irrigated area in southern Ukraine. In: Gehrels H, Peters NE, Hoehn E, Jensen K, Leibundgut C, Griffioen J, Webb B, Zaadnoordijk WJ (eds) Impact of Human Activity on Groundwater Dynamics (Proceedings of 6th IAHS Scientific Assembly, Maastricht, The Netherlands, July 2001). IAHS Publication 269, pp 95–98
Zurück zum Zitat Paton BY, Veklych L, Gritsenko P, Yevropina I et al (2007) National Atlas of Ukraine. In: Paton B, SSPE K (eds) Nat Acad Sci Ukraine “Cartography”, p 440 Paton BY, Veklych L, Gritsenko P, Yevropina I et al (2007) National Atlas of Ukraine. In: Paton B, SSPE K (eds) Nat Acad Sci Ukraine “Cartography”, p 440
Zurück zum Zitat Ruelland D, Ardoin-Bardin S, Billen G, Servat E (2008) Sensitivity of a lumped and semi-distributed hydrological model to several methods of rainfall interpolation on a large basin in West Africa. J Hydrol 361:96–117. doi:10.1016/j.jhydrol.2008.07.049 CrossRef Ruelland D, Ardoin-Bardin S, Billen G, Servat E (2008) Sensitivity of a lumped and semi-distributed hydrological model to several methods of rainfall interpolation on a large basin in West Africa. J Hydrol 361:96–117. doi:10.​1016/​j.​jhydrol.​2008.​07.​049 CrossRef
Zurück zum Zitat Schwärzel K, Feger K-H, Häntzschel J et al (2009) A novel approach in model-based mapping of soil water conditions at forest sites. Forest Ecol Manag 258:2163–2174CrossRef Schwärzel K, Feger K-H, Häntzschel J et al (2009) A novel approach in model-based mapping of soil water conditions at forest sites. Forest Ecol Manag 258:2163–2174CrossRef
Zurück zum Zitat Shestopalov (1981) Шecтoпaлoв B.M “Ecтecтвeнныe pecypcы пoдзeмныx вoд плaтфopмeнныx apтeзиaнcкиx бacceйнoв Укpaины.”, Hayкoвa Дyмкa, Киeв 1981 Shestopalov (1981) Шecтoпaлoв B.M “Ecтecтвeнныe pecypcы пoдзeмныx вoд плaтфopмeнныx apтeзиaнcкиx бacceйнoв Укpaины.”, Hayкoвa Дyмкa, Киeв 1981
Zurück zum Zitat Shestopalov (1988) Шecтoпaлoв B.M и дp. “Boдooбмeн в гидpo-гeoлoгичecкиx cтpyктypax Укpaины: Meтoды изyчeния вoдooбмeнa.” Hayкoвa Дyмкa, Киeв 1988 Shestopalov (1988) Шecтoпaлoв B.M и дp. “Boдooбмeн в гидpo-гeoлoгичecкиx cтpyктypax Укpaины: Meтoды изyчeния вoдooбмeнa.” Hayкoвa Дyмкa, Киeв 1988
Zurück zum Zitat Tavarez Wahren FT, Tarasiuk M, Mykhnovych A et al (2011) Estimation of spatially distributed soil information: dealing with data shortages in the Western Bug Basin, Ukraine. Environ Earth Sci 65:1501–1510. doi:10.1007/s12665-011-1197-3 CrossRef Tavarez Wahren FT, Tarasiuk M, Mykhnovych A et al (2011) Estimation of spatially distributed soil information: dealing with data shortages in the Western Bug Basin, Ukraine. Environ Earth Sci 65:1501–1510. doi:10.​1007/​s12665-011-1197-3 CrossRef
Zurück zum Zitat Wahren A, Schwärzel K, Feger KH et al (2007) Identification and model based assessment of the potential water retention caused by land-use changes. Adv Geosci 11:49–56CrossRef Wahren A, Schwärzel K, Feger KH et al (2007) Identification and model based assessment of the potential water retention caused by land-use changes. Adv Geosci 11:49–56CrossRef
Zurück zum Zitat Wang W, Kolditz O (2007) Object-oriented finite element analysis of thermo-hydro-mechanical (THM) problems in porous media. Int J Numer Methods Eng 69(1):162–201CrossRef Wang W, Kolditz O (2007) Object-oriented finite element analysis of thermo-hydro-mechanical (THM) problems in porous media. Int J Numer Methods Eng 69(1):162–201CrossRef
Zurück zum Zitat Willmott CJ, Matsuura K (2005) Advantages of the mean absolute error (MAE) over the root mean square error (RMSE) in assessing average model performance. Clim Res 30:79CrossRef Willmott CJ, Matsuura K (2005) Advantages of the mean absolute error (MAE) over the root mean square error (RMSE) in assessing average model performance. Clim Res 30:79CrossRef
Zurück zum Zitat Yakovlev EA, Sitnikow AB, Zarizkyi AI et al (1991) Water balance under anthropogenic conditions. In: Schestopalow WM (ed) Water exchange processes in hydrogeological structures in Ukraine. Nyukowa Dymka, Kiev, pp 182–209 Yakovlev EA, Sitnikow AB, Zarizkyi AI et al (1991) Water balance under anthropogenic conditions. In: Schestopalow WM (ed) Water exchange processes in hydrogeological structures in Ukraine. Nyukowa Dymka, Kiev, pp 182–209
Metadaten
Titel
Inverse determination of groundwater inflow using water balance simulations
verfasst von
P. Körner
T. Pluntke
A. Sachse
N. Böttcher
D. Naumov
O. Kolditz
C. Bernhofer
Publikationsdatum
01.12.2014
Verlag
Springer Berlin Heidelberg
Erschienen in
Environmental Earth Sciences / Ausgabe 12/2014
Print ISSN: 1866-6280
Elektronische ISSN: 1866-6299
DOI
https://doi.org/10.1007/s12665-014-3327-1

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