Model based estimation of climate change impacts on the drainage demand of low lying coastal areas in Northwest Germany along the North Sea

Journal of Hydrology: Regional Studies - Tập 48 - Trang 101451 - 2023
Helge Bormann1, Jenny Kebschull1
1Jade University of Applied Sciences, Ofener Straße 16/19, D-26121 Oldenburg, Germany

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Ahlhorn, 2018, Akteursbeteiligung bei der Anpassung des Entwässerungsmanagements im norddeutschen Küstenraum, Wasser Abfall, 20, 28, 10.1007/s35152-018-0082-8 Bormann, 2008, Sensitivity of a regionally applied soil vegetation atmosphere transfer scheme to input data resolution and data classification, J. Hydrol., 351, 154, 10.1016/j.jhydrol.2007.12.011 Bormann, 2012, Assessing the soil texture-specific sensitivity of simulated soil moisture to projected climate change by SVAT modelling, Geoderma, 185–186, 73, 10.1016/j.geoderma.2012.03.021 Bormann, 2018, Hydrology of (shallow) coastal regions, 49 Bormann, 1999, Impacts of landscape management on the hydrological behavior of small agricultural catchments, Phys. Chem. Earth, 24, 291, 10.1016/S1464-1909(99)00002-7 Bormann, 2012, Adaptation of water management to regional climate change in a coastal region – hydrological change vs. community perception and strategies, J. Hydrol., 454–455, 64, 10.1016/j.jhydrol.2012.05.063 Bormann, 2018, Modellbasierte Szenarioanalyse zur Anpassung des Entwässerungsmanagements im nordwestdeutschen Küstenraum, Wasser Abfall, 20, 60, 10.1007/s35152-018-0083-7 Braden, 1995, The model AMBETI – a detailed description of a soil-plant-atmosphere model, Offenb. Ber. Des. Dtsch. Wetterd. 195, 117 Brasseur, 2017, 348 Bürger, 2005, Regression-based downscaling of spatial variability for hydrologic applications, J. Hydrol., 311, 299, 10.1016/j.jhydrol.2005.01.025 De Girolamo, 2022, Impact of long-term climate change on flow regime in a Mediterranean basin, J. Hydrol.: Reg. Stud., 41 Delta Programme, 2021. Staying on track in climate-proofing the Netherlands. Including: Delta Plan on Flood Risk Management, Delta Plan on Freshwater Supply, Delta Plan on Spatial Adaptation. Ministry of Infrastructure and Water, Management, the Ministry of Agriculture, Nature and Food Quality, and the Ministry of the, Interior and Kingdom Relations. The Netherlands. Available online: https://english.deltaprogramma.nl/documents/publications/2020/09/15/dp2021-eng-printversie (accessed on 31 January 2023). Diekkrüger, 1995, Simulation of water fluxes using different methods for estimating soil parameters, Ecol. Model., 81, 83, 10.1016/0304-3800(94)00162-B Diekkrüger, 1995, Validity of agroecosystem models - a comparison of results of different models applied to the same data set, Ecol. Model., 81, 3, 10.1016/0304-3800(94)00157-D Engels, 2022, Der Einsatz von Statusgebern zur Beobachtung des Siel- und Schöpfwerkbetriebs, Wasser Abfall, 24, 20, 10.1007/s35152-022-1324-3 Enke, 2005, A novel scheme to derive optimized circulation pattern classifications for downscaling and forecast purposes, Theor. Appl. Climatol., 82, 51, 10.1007/s00704-004-0116-x Feddes, R.A., Kowalik, P.J., Zaradny, H., 1978. Simulation of field water use and crop yield. Simulations Monograph. Pudoc: Wageningen, The Netherlands. 188 pp. GERICS, 2023. Climate Service Center Germany. Available online: https://www.climate-service-center.de/ (accessed on 31 January 2023). Haasnoot, 2020, Adaptation to uncertain sea-level rise; how uncertainty in Antarctic mass-loss impacts the coastal adaptation strategy of the Netherlands, Environ. Res. Lett., 15, 10.1088/1748-9326/ab666c Hattermann, 2015, Climate change impacts on hydrology and water resources, Meteorol. Z., 24, 201, 10.1127/metz/2014/0575 Herrmann, 2018, Aktualisierung der mGROWA-Modellierung für Niedersachsen (unpublished report). Forschungszentrum Jülich, Germany, 84 Herrmann, 2013, Zeitlich und räumlich hochaufgelöste flächendifferenzierte Simulation des Landschaftswasserhaushalts in Niedersachsen mit dem Modell mGROWA, Hydrol. Wasserbewirtsch., 57, 206 Hofstede, 2019, Schleswig-Holstein's climate change adaptation strategy for the Wadden Sea in 2100 (Schleswig-Holsteins Klima-Anpassungsstrategie für das Wattenmeer 2100), Die Küste, 87, 19 IPCC, 2000, 570 IPCC, 2013, 1535 IPCC, 2021, 2391 IPCC, 2022. Climate Change 2022. Impacts, Adaptation and Vulnerability. Contribution of Working Group II to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change. H.-O. Pörtner, D.C. Roberts, M. Tignor, E.S. Poloczan-ska, K. Mintenbeck, A. Alegría, M. Craig, S. Langsdorf, S. Löschke, V. Möller, A. Okem, B. Rama (eds.). Cambridge University Press: Cambridge, UK and New York, NY, USA. 3056 pp. doi:10.1017/9781009325844. Jacob, 2001, A note to the simulation of the annual and inter-annual variability of the water budget over the Baltic Sea drainage basin, Meteorol. Atmos. Phys., 77, 61, 10.1007/s007030170017 Kool, 2020, Preparing for sea-level rise through adaptive managed retreat of a new zealand stormwater and wastewater network, Infrastructures, 5, 92, 10.3390/infrastructures5110092 Kunkel, 2002, The GROWA98 model for water balance analysis in large river basins-the river Elbe case study, J. Hydrol., 259, 152, 10.1016/S0022-1694(01)00579-0 Linke, C. et al., 2022. Leitlinien zur Interpretation regionaler Klimamodelldaten des Bund-Länder-Fachgespräches „Interpretation regionaler Klimamodelldaten“, Potsdam, Okt.2022. Available online: https://lfu.brandenburg.de/sixcms/media.php/9/Leitlinien-Klimamodelldaten.pdf (accessed on 1 March 2023). Löpmeier, 1983, Ein agrarmeteorologischens Modell zur Berechung der aktuellen Verdunstung (AMBAV). Beiträge zur Agrarmeteorologie 7/83. ZAMF, Braunschweig, 50 Meyer, 1983, Entwicklung einer geeigneten Sielzugformel zur Berechnung von Sielzugmengen, Wasser Boden, 3, 124 Monteith, 1965, Evaporation and environment, 205 Moriasi, 2007, Model evaluation guidelines for systematic quantification of accuracy in watershed simulations, Trans. ASABE, 50, 885, 10.13031/2013.23153 Nash, 1970, River flow forecasting through conceptual models part I - a discussion of principles, J. Hydrol., 10, 282, 10.1016/0022-1694(70)90255-6 NIKLIS, 2023. Niedersächsisches Klimainformationssystem. Available online: https://www.umweltkarten-niedersachsen.de/niklis/ (accessed on 31 January 2023). NLWKN, 2007. Generalplan Küstenschutz Niedersachsen/Bremen - Festland. Küstenschutz Band 1, Niedersächsischer Landesbetrieb für Wasserwirtschaft, Küsten- und Naturschutz. Available online: https://www.nlwkn.niedersachsen.de/download/22925/Generalplan_Kuestenschutz_Niedersachsen_Bremen_Teil_1_-_Festland.pdf (accessed on 31 January 2023). NLWKN, 2020. Generalplan Küstenschutz Niedersachsen/Bremen - Schutzdeiche. Küstenschutz Band 3, Niedersächsischer Landesbetrieb für Wasserwirtschaft, Küsten- und Naturschutz. Available online: https://www.nlwkn.niedersachsen.de/download/163190/Generalplan_Kuestenschutz_Niedersachsen_Bremen_Teil_3_-_Schutzdeiche.pdf (accessed on 31 January 2023). Rawls, W.J., Brakensiek, D.L., 1985. Prediction of soil water properties for hydrological modelling. In: Proceedings of the Symposium Watershed Management in the Eighties. Jones, E., Ward, T.J. (eds.). Denver, US. 293–299. Refsgaard, 1996, Construction, calibration and validation of hydrological models, 41 Ritchie, 1972, A model for predicting evaporation from a row crop with incomplete cover, Water Resour. Res., 8, 1204, 10.1029/WR008i005p01204 Ritzema, 2015, Land drainage strategies to cope with climate change in the Netherlands, Acta Agric. Scand. - B Soil Plant Sci., 65, 80 Rupert, D., 2004. Ermittlung von Abflüssen über Siel- und Pumpmengen in Ostfriesland. Bericht des GB III des NLWKN Aurich, Germany. 101 p. Available online: https://www.nlwkn.niedersachsen.de/download/22322 (accessed on 6 May 2023). Shrestha, 2017, Bias correction of climate models for hydrological modelling - are simple methods still useful?, Meterol. Appl., 24, 531, 10.1002/met.1655 Smith, 1978, A parameter-efficient hydrologic infiltration model, Water Resour. Res., 14, 533, 10.1029/WR014i003p00533 Spiekermann, J., Ahlhorn, F., Bormann, H., Kebschull, J., 2018. Zukunft der Binnenentwässerung: Strategische Ausrichtung in Zeiten des Wandels. Eine Betrachtung für das Verbandsgebiet des I. Entwässerungsverbandes Emden. University of Oldenburg, Jade University of Applied Sciences, Oldenburg, Germany. 64 pp. Available online: www.uol.de/klever/ergebnisbroschuere (accessed on 31 January 2023). Titus, 1987, Greenhouse effect, sea level rise, and coastal drainage systems, J. Water Resour. Plan. Manag., 113, 216, 10.1061/(ASCE)0733-9496(1987)113:2(216) van Alphen, 2015, Uncertain accelerated sea-level rise, potential consequences, and adaptive strategies in the Netherlands, Water, 14, 1527, 10.3390/w14101527 van den Hurk, 2015, Analysis of a compounding surge and precipitation event in the Netherlands, Environ. Res. Lett., 10, 10.1088/1748-9326/10/3/035001 von Storch, 2011, 321 Waddington, 2022, Quantifying the effects of sea level rise on estuarine drainage systems, Water Resour. Res., 58, 10.1029/2021WR031405