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Erschienen in: Hydrogeology Journal 8/2011

01.12.2011 | Paper

Combination of soil-water balance models and water-table fluctuation methods for evaluation and improvement of groundwater recharge calculations

verfasst von: Zhang Jie, Jan van Heyden, David Bendel, Roland Barthel

Erschienen in: Hydrogeology Journal | Ausgabe 8/2011

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Abstract

Despite a long history of related research, quantifying and verifying recharge is still a major challenge. The combination and comparison of conceptually different methods has been recommended as a strategy for evaluating recharge estimates. In this article, recharge estimates from water-table fluctuation (WTF) methods are combined with and compared to the results of the spatially and temporally discretized soil-water-balance model PROMET (processes of radiation, mass and energy transfer). As PROMET and WTF methods rely on different measurable variables, a comparison of these two contrasting techniques allows improved assessment of the plausibility of recharge estimates. An enhanced approach to WTF methods is presented. The approach assumes that in the case of no recharge, there exists a maximum possible potential decline for any given groundwater level. The primary conclusion is that WTF methods are excellent for determining the plausibility of spatially distributed regional-groundwater-recharge estimation approaches and for detecting inconsistencies in available models. Recharge estimates derived from WTF approaches alone are, however, not suitable for regional-scale recharge estimation due to (1) their strong dependency on local data, applicability of which is limited to only very specific conditions, and (2) their sensitivity to influences other than recharge.

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Literatur
Zurück zum Zitat Barthel R (2006) Common problematic aspects of coupling hydrological models with groundwater flow models on the river catchment scale. AdGeo 9:63–71 Barthel R (2006) Common problematic aspects of coupling hydrological models with groundwater flow models on the river catchment scale. AdGeo 9:63–71
Zurück zum Zitat Barthel R (2011) An indicator approach to assessing and predicting the quantitative state of groundwater bodies on the river basin scale with a special focus on the impacts of climate change. Hydrogeol J 19(3):525–546. doi:10.1007/s10040-010-0693-y CrossRef Barthel R (2011) An indicator approach to assessing and predicting the quantitative state of groundwater bodies on the river basin scale with a special focus on the impacts of climate change. Hydrogeol J 19(3):525–546. doi:10.​1007/​s10040-010-0693-y CrossRef
Zurück zum Zitat Barthel R, Rojanschi V, Wolf J, Braun J (2005) Large-scale water resources management within the framework of GLOWA-Danube, part A: the groundwater model. Phys Chem Earth 30(6–7):372–382 Barthel R, Rojanschi V, Wolf J, Braun J (2005) Large-scale water resources management within the framework of GLOWA-Danube, part A: the groundwater model. Phys Chem Earth 30(6–7):372–382
Zurück zum Zitat Barthel R, Jagelke J, Götzinger J, Gaiser T, Printz A (2008) Aspects of choosing appropriate concepts for modelling groundwater resources in regional integrated water resources management: examples from the Neckar (Germany) and Oueme Catchment (Benin). Phys Chem Earth 33(1–2):92–114. doi:10.1016/j.pce.2007.04.013 Barthel R, Jagelke J, Götzinger J, Gaiser T, Printz A (2008) Aspects of choosing appropriate concepts for modelling groundwater resources in regional integrated water resources management: examples from the Neckar (Germany) and Oueme Catchment (Benin). Phys Chem Earth 33(1–2):92–114. doi:10.​1016/​j.​pce.​2007.​04.​013
Zurück zum Zitat Barthel R, Janisch S, Nickel D, Trifkovic A (2010) Using the multiactor-approach in GLOWA-Danube to simulate decisions for the water supply sector under conditions of global climate change. Water Resour Manage 24:239–275. doi:10.1007/s11269-009-9445-y CrossRef Barthel R, Janisch S, Nickel D, Trifkovic A (2010) Using the multiactor-approach in GLOWA-Danube to simulate decisions for the water supply sector under conditions of global climate change. Water Resour Manage 24:239–275. doi:10.​1007/​s11269-009-9445-y CrossRef
Zurück zum Zitat Coes A, Spruill T, Thomasson M (2007) Multiple-method estimation of recharge rates at diverse locations in the North Carolina Coastal Plain, USA. Hydrogeol J 15:773–788CrossRef Coes A, Spruill T, Thomasson M (2007) Multiple-method estimation of recharge rates at diverse locations in the North Carolina Coastal Plain, USA. Hydrogeol J 15:773–788CrossRef
Zurück zum Zitat Crosbie RS, Binning P, Kalma JD (2005) A time series approach to inferring groundwater recharge using the water table fluctuation method. Water Resour Res 41 Crosbie RS, Binning P, Kalma JD (2005) A time series approach to inferring groundwater recharge using the water table fluctuation method. Water Resour Res 41
Zurück zum Zitat De Vries J, Simmers I (2002) Groundwater recharge: an overview of processes and challenges. Hydrogeol J 10:5–17CrossRef De Vries J, Simmers I (2002) Groundwater recharge: an overview of processes and challenges. Hydrogeol J 10:5–17CrossRef
Zurück zum Zitat Delin GN, Healy RW, Lorenz DL, Nimmo JR (2007) Comparison of local- to regional-scale estimates of groundwater recharge in Minnesota, USA. J Hydrol 334:231–249CrossRef Delin GN, Healy RW, Lorenz DL, Nimmo JR (2007) Comparison of local- to regional-scale estimates of groundwater recharge in Minnesota, USA. J Hydrol 334:231–249CrossRef
Zurück zum Zitat Eagleson PS (1978) Climate, soil, and vegetation. Water Resour Res 04(5):722–730CrossRef Eagleson PS (1978) Climate, soil, and vegetation. Water Resour Res 04(5):722–730CrossRef
Zurück zum Zitat Fetter CW (2001) Applied hydrogeology. Prentice-Hall, Upper Saddle River, NJ Fetter CW (2001) Applied hydrogeology. Prentice-Hall, Upper Saddle River, NJ
Zurück zum Zitat Healy RW, Cook PG (2002) Using groundwater levels to estimate recharge. Hydrogeol J 10:91–109CrossRef Healy RW, Cook PG (2002) Using groundwater levels to estimate recharge. Hydrogeol J 10:91–109CrossRef
Zurück zum Zitat Heppner CS, Nimmo JR (2005) A computer program for predicting recharge with a master recession curve. US Geol Surv Sci Invest Rep 2005–5172, 8 pp Heppner CS, Nimmo JR (2005) A computer program for predicting recharge with a master recession curve. US Geol Surv Sci Invest Rep 2005–5172, 8 pp
Zurück zum Zitat Heppner CS, Nimmo JR, Folmar GJ, Gburek WJ, Risser DW (2007) Multiple-methods investigation of recharge at a humid-region fractured rock site, Pennsylvania, USA. Hydrogeol J 15:915–927CrossRef Heppner CS, Nimmo JR, Folmar GJ, Gburek WJ, Risser DW (2007) Multiple-methods investigation of recharge at a humid-region fractured rock site, Pennsylvania, USA. Hydrogeol J 15:915–927CrossRef
Zurück zum Zitat Hiscock KM (2005) Hydrogeology principles and practice. Blackwell, Oxford, UK Hiscock KM (2005) Hydrogeology principles and practice. Blackwell, Oxford, UK
Zurück zum Zitat Johansson PO (1987) Estimation of groundwater recharge in sandy till with two different methods using groundwater level fluctuations. J Hydrol 90:183–198CrossRef Johansson PO (1987) Estimation of groundwater recharge in sandy till with two different methods using groundwater level fluctuations. J Hydrol 90:183–198CrossRef
Zurück zum Zitat Johnson A (1967) Specific yield: compilation of specific yields for various materials. US Geol Surv Water Suppl Pap 1662-D, 74 pp Johnson A (1967) Specific yield: compilation of specific yields for various materials. US Geol Surv Water Suppl Pap 1662-D, 74 pp
Zurück zum Zitat Ketchum N, Donovan J, Avery W (2000) Recharge characteristics of a phreatic aquifer as determined by storage accumulation. Hydrogeol J 8:579–593CrossRef Ketchum N, Donovan J, Avery W (2000) Recharge characteristics of a phreatic aquifer as determined by storage accumulation. Hydrogeol J 8:579–593CrossRef
Zurück zum Zitat Lorenz DW, Delin GN (2007) Regional estimation of groundwater recharge in Minnesota using a multiple regression model. Ground Water 45(2):374–382 Lorenz DW, Delin GN (2007) Regional estimation of groundwater recharge in Minnesota using a multiple regression model. Ground Water 45(2):374–382
Zurück zum Zitat Ludwig R, Mauser W, Niemeyer S, Colgan A, Stolz R, Escher-Vetter H, Kuhn M, Reichstein M, Tenhunen J, Kraus A, Ludwig M, Barth M, Hennicker R (2003) Web-based modelling of energy, water and matter fluxes to support decision making in mesoscale catchments: the integrative perspective of Glowa-Danube. Phys Chem Earth 28:621–634CrossRef Ludwig R, Mauser W, Niemeyer S, Colgan A, Stolz R, Escher-Vetter H, Kuhn M, Reichstein M, Tenhunen J, Kraus A, Ludwig M, Barth M, Hennicker R (2003) Web-based modelling of energy, water and matter fluxes to support decision making in mesoscale catchments: the integrative perspective of Glowa-Danube. Phys Chem Earth 28:621–634CrossRef
Zurück zum Zitat Mauser W, Bach H (2009) PROMET: large scale distributed hydrological modelling to study the impact of climate change on the water flows of mountain watersheds. J Hydrol 376:362–377CrossRef Mauser W, Bach H (2009) PROMET: large scale distributed hydrological modelling to study the impact of climate change on the water flows of mountain watersheds. J Hydrol 376:362–377CrossRef
Zurück zum Zitat Meinzer OE (1923) The occurrence of groundwater in the United States with a discussion of principles. US Geol Surv Water Suppl Pap 489, 321 pp Meinzer OE (1923) The occurrence of groundwater in the United States with a discussion of principles. US Geol Surv Water Suppl Pap 489, 321 pp
Zurück zum Zitat Meinzer O, Stearns N (1929) A study of groundwater in the Pomperaug Basin, Connecticut with special reference to intake and discharge. US Geol Surv Water Suppl Pap 597:73–146 Meinzer O, Stearns N (1929) A study of groundwater in the Pomperaug Basin, Connecticut with special reference to intake and discharge. US Geol Surv Water Suppl Pap 597:73–146
Zurück zum Zitat Moon SK, Woo NC, Lee KS (2004) Statistical analysis of hydrographs and water-table fluctuation to estimate groundwater recharge. J Hydrol 292:198–209CrossRef Moon SK, Woo NC, Lee KS (2004) Statistical analysis of hydrographs and water-table fluctuation to estimate groundwater recharge. J Hydrol 292:198–209CrossRef
Zurück zum Zitat Nickel D, Barthel R, Braun J (2005) Large-scale water resources management within the framework of GLOWA-Danube: the water supply model. Phys Chem Earth 30:383–388CrossRef Nickel D, Barthel R, Braun J (2005) Large-scale water resources management within the framework of GLOWA-Danube: the water supply model. Phys Chem Earth 30:383–388CrossRef
Zurück zum Zitat Risser DW, Gburek WJ, Folmar GJ (2009) Comparison of recharge estimates at a small watershed in east-central Pennsylvania, USA. Hydrogeol J 17:287–298CrossRef Risser DW, Gburek WJ, Folmar GJ (2009) Comparison of recharge estimates at a small watershed in east-central Pennsylvania, USA. Hydrogeol J 17:287–298CrossRef
Zurück zum Zitat Rushton KR, Redshaw SC (1979) Seepage and groundwater flow. Wiley, Chichester, UK, 332 pp Rushton KR, Redshaw SC (1979) Seepage and groundwater flow. Wiley, Chichester, UK, 332 pp
Zurück zum Zitat Rutledge AT (1998) Computer programs for describing the recession of groundwater discharge and for estimating mean groundwater recharge and discharge from streamflow records: update. US Geol Surv Water Resour Invest Rep 98-4148 Rutledge AT (1998) Computer programs for describing the recession of groundwater discharge and for estimating mean groundwater recharge and discharge from streamflow records: update. US Geol Surv Water Resour Invest Rep 98-4148
Zurück zum Zitat Sanford W (2002) Recharge and groundwater models: an overview. Hydrogeol J 10:110–120CrossRef Sanford W (2002) Recharge and groundwater models: an overview. Hydrogeol J 10:110–120CrossRef
Zurück zum Zitat Scanlon B, Healy R, Cook P (2002) Choosing appropriate techniques for quantifying groundwater recharge. Hydrogeol J 10:18–39CrossRef Scanlon B, Healy R, Cook P (2002) Choosing appropriate techniques for quantifying groundwater recharge. Hydrogeol J 10:18–39CrossRef
Zurück zum Zitat Schilling K (2009) Investigating local variation in groundwater recharge along a topographic gradient, Walnut Creek, Iowa, USA. Hydrogeol J 17:397–407CrossRef Schilling K (2009) Investigating local variation in groundwater recharge along a topographic gradient, Walnut Creek, Iowa, USA. Hydrogeol J 17:397–407CrossRef
Zurück zum Zitat Schirmer M (2008) Zukünftige Grundwasserforschung: Was sind unsere Aufgaben? [Future groundwater research: What are our responsibilities?]. Grundwasser 13:131–132CrossRef Schirmer M (2008) Zukünftige Grundwasserforschung: Was sind unsere Aufgaben? [Future groundwater research: What are our responsibilities?]. Grundwasser 13:131–132CrossRef
Zurück zum Zitat Schwartz FW, Zhang H (2003) Fundamentals of ground water. Wiley, New York Schwartz FW, Zhang H (2003) Fundamentals of ground water. Wiley, New York
Zurück zum Zitat Shah N, Ross M (2009) Variability in specific yield under shallow water table conditions. J Hydrol Eng 14:1290–1298CrossRef Shah N, Ross M (2009) Variability in specific yield under shallow water table conditions. J Hydrol Eng 14:1290–1298CrossRef
Zurück zum Zitat Sophocleous MA (1991) Combining the soilwater balance and water-level fluctuation methods to estimate natural groundwater recharge: practical aspects. J Hydrol 124:229–241CrossRef Sophocleous MA (1991) Combining the soilwater balance and water-level fluctuation methods to estimate natural groundwater recharge: practical aspects. J Hydrol 124:229–241CrossRef
Zurück zum Zitat Zhang J (2009) Estimation of groundwater recharge from groundwater level time series in the Upper Danube Catchment. MSc Thesis, Karlsruhe University of Applied Sciences, Germany Zhang J (2009) Estimation of groundwater recharge from groundwater level time series in the Upper Danube Catchment. MSc Thesis, Karlsruhe University of Applied Sciences, Germany
Metadaten
Titel
Combination of soil-water balance models and water-table fluctuation methods for evaluation and improvement of groundwater recharge calculations
verfasst von
Zhang Jie
Jan van Heyden
David Bendel
Roland Barthel
Publikationsdatum
01.12.2011
Verlag
Springer-Verlag
Erschienen in
Hydrogeology Journal / Ausgabe 8/2011
Print ISSN: 1431-2174
Elektronische ISSN: 1435-0157
DOI
https://doi.org/10.1007/s10040-011-0772-8

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