Dr.

Doris Düthmann

Gastwissenschaftler*in
Profil
Forschungsgruppe
Kompetenzen
  • Hydrologische Modellierung (einschließlich Modellverbesserungen durch Einbindung zusätzlicher Daten (z. B. aus der Fernerkundung), Unsicherheitsanalysen, Modellanalysen in Bezug auf Parameterinstabilitäten)
  • Ökohydrologie
  • Hydrologie von durch Schnee- und Gletscherschmelze beeinflussten Gebirgsregionen
  • Hydrologischer Wandel
Lebenslauf

Positionen

Seit 2019   Wissenschaftlerin am IGB (Berlin, Deutschland)

2016 - 2019  Forschungsaufenthalt an der TU Wien, Institut für Ingenieurhydrologie (Wien, Österreich)

2009 - 2016 Wissenschaftliche Mitarbeiterin am GeoForschungsZentrum Potsdam (GFZ), Sektion Hydrologie (Potsdam, Deutschland)

2007 - 2009 Mitarbeiterin im Bereich Umweltmodellierung, ADAS (Wolverhampton, Großbritannien)

Akademische Ausbildung

2015 Promotion in Hydrologie (Universität Potsdam)

2005 Diplom in Geoökologie (TU Braunschweig)

Publikationen

2024

2023

2022

2021

Mai 2021
Duethmann, D.; Huang, S.; Wortmann, M.; Krysanova, V.; Vorogushyn, S.

Hydrology of the upper Tarim River : [Chapter 3.3]

Sustainable management of river oases along the Tarim River/China : (SuMaRiO)/Bernd Cyffka, Markus Disse, Florian Betz (eds.). - Stuttgart, 2021. - S. 53-64

2020

Publikationen vor 2020

He, Z., Unger-Shayesteh, K., Vorogushyn, S., Weise, S. M., Kalashnikova, O., Gafurov, A., Duethmann, D., Barandun, M., and Merz, B. (2019): Constraining hydrological model parameters using water isotopic compositions in a glacierized basin, Central Asia, J. Hydrol., 571, 332-348, doi:10.1016/j.jhydrol.2019.01.048.

Blöschl, G., Bierkens, M. F. P., Chambel, A., Cudennec, C., Destouni, G., Fiori, A., Kirchner, J. W., McDonnell, J. J., Savenije, H. H. G., Sivapalan, M., Stumpp, C., Toth, E., Volpi, E., Carr, G., Lupton, C., Salinas, J., Széles, B., Viglione, … (2019): Twenty-three unsolved problems in hydrology (UPH) – a community perspective, Hydrological Sciences Journal, 64, 1141-1158, doi:10.1080/02626667.2019.1620507.

Duethmann, D. and Blöschl, G. (2018): Why has catchment evaporation increased in the past 40 years? A data-based study in Austria. Hydrol. Earth Syst. Sci., 22, 5143-5158, doi:10.5194/hess-22-5143-2018.

Sleziak, P., Szolgay, J., Hlavčová, K., Duethmann, D., Parajka, J., and Danko, M. (2018): Factors controlling alterations in the performance of a runoff model in changing climate conditions. J. Hydrol. Hydromech., 66, 1-12, doi:10.2478/johh-2018-0031.

Huang, S. C., Wortmann, M., Duethmann, D., Menz, C., Shi, F. Z., Zhao, C. Y., Su, B. D., and Krysanova, V. (2018): Adaptation strategies of agriculture and water management to climate Change in the Upper Tarim River basin, NW China. Agric. Water Manage., 203, 207-224, doi:10.1016/j.agwat.2018.03.004.

Duethmann D., C. Menz, T. Jiang and S. Vorogushyn (2016): Projections for headwater catchments of the Tarim River reveal glacier retreat and decreasing surface water availability but uncertainties are large. Environ. Res. Lett., 11, 054024, doi:10.1088/1748-9326/11/5/054024.

Farinotti, D., L. Longuevergne, G. Moholdt, D. Duethmann, T. Mölg, T. Bolch, S. Vorogushyn, and A. Güntner (2015): Substantial glacier mass loss in the Tien Shan over the past 50 years. Nature Geoscience, 8, 716-722, doi:10.1038/ngeo2513.

Duethmann, D., T. Bolch, D. Farinotti, D. Kriegel, S. Vorogushyn, B. Merz, T. Pieczonka, T. Jiang, B. Su, and A. Güntner (2015): Attribution of streamflow trends in snow- and glacier melt dominated catchments of the Tarim River, Central Asia. Water Resources Research, 51(6), 4727–4750, doi:10.1002/2014WR016716.

Gafurov, A., S. Vorogushyn, A. Merkushkin, D. Duethmann, D. Farinotti, and B. Merz (2015): Snow cover reconstruction methodology based on historic in situ observations and recent remote sensing data. The Cryosphere, 9(2), 451-463, doi:10.5194/tc-9-451-2015.

Rumbaur, C., N. Thevs, M. Disse, M. Ahlheim, A. Brieden, B. Cyffka, D. Duethmann, T. Feike, O. Frör, P. Gärtner, Ü. Halik, J. Hill, M. Hinnenthal, P. Keilholz, B. Kleinschmit, V. Krysanova, M. Kuba, S. Mader, C. Menz, H. Othmanli, S. Pelz, M. Schroeder, T.F. Siew, V. Stender, K. Stahr, F.M. Thomas, M. Welp, M. Wortmann, X. Zhao, X. Chen, T. Jiang, J. Luo, H. Yimit, R. Yu, X. Zhang, and C. Zhao (2015): Sustainable management of river oases along the Tarim River (SuMaRiO) in Northwest China under conditions of climate change. Earth System Dynamics, 6(1): 83-107, doi:10.5194/esd-6-83-2015.

Kundzewicz, Z., B. Merz, S. Vorogushyn, H. Hartmann, D. Duethmann, M. Wortmann, S. Huang, B. Su, T. Jiang, and V. Krysanova (2015): Analysis of changes in climate and river discharge with focus on seasonal runoff predictability in the Aksu River Basin. Environmental Earth Sciences, 73(2), 501-516, doi:10.1007/s12665-014-3137-5.

Krysanova, V., M. Wortmann, T. Bolch, B. Merz, D. Duethmann, J. Walter, S. Huang, T. Jiang, B. Su, and Z. Kundzewicz (2015): Analysis of current trends in climate parameters, river discharge and glaciers in the Aksu River basin (Central Asia). Hydrological Sciences Journal, 60(4), 566-590, doi:10.1080/02626667.2014.925559.

Duethmann, D., J. Peters, T. Blume, S. Vorogushyn, and A. Güntner (2014): The value of satellite-derived snow cover images for calibrating a hydrological model in snow-dominated catchments in Central Asia. Water Resources Research, 50(3): 2002-2021, doi:10.1002/2013WR014382.

Gooday, R., S. Anthony, D. Chadwick, P. Newell-Price, D. Harris, D. Duethmann, R. Fish, A. Collins, and M. Winter (2014): Modelling the cost-effectiveness of mitigation methods for multiple pollutants at farm scale. Science of the Total Environment, 468: 1198-1209, doi:10.1016/j.scitotenv.2013.04.078.

Duethmann, D., J. Zimmer, A. Gafurov, A. Güntner, D. Kriegel, B. Merz, and S. Vorogushyn (2013): Evaluation of areal precipitation estimates based on downscaled reanalysis and station data by hydrological modelling. Hydrology and Earth System Sciences, 17(7): 2415-2434, doi:10.5194/hess-17-2415-2013.

Collins, A. L., Y. S. Zhang, D. Duethmann, D. E. Walling, and K. S. Black (2013): Using a novel tracing-tracking framework to source fine-grained sediment loss to watercourses at sub-catchment scale. Hydrological Processes, 27(6): 959-974, doi:10.1002/hyp.9652.

Kriegel, D., C. Mayer, W. Hagg, S. Vorogushyn, D. Duethmann, A. Gafurov, and D. Farinotti (2013): Changes in glacierisation, climate and runoff in the second half of the 20th century in the Naryn basin, Central Asia. Global and Planetary Change, 110: 51-61, doi:10.1016/j.glo placha.2013.05.014.

Ott, I., D. Duethmann, J. Liebert, P. Berg, H. Feldmann, J. Ihringer, H. Kunstmann, B. Merz, G. Schaedler, and S. Wagner (2013): High-resolution climate change impact analysis on medium-sized river catchments in Germany: An ensemble assessment. Journal of Hydrometeorology, 14(4): 1175-1193, doi:10.1175/JHM-D-12-091.1.

Unger-Shayesteh, K., S. Vorogushyn, D. Farinotti, A. Gafurov, D. Duethmann, A. Mandychev, and B. Merz (2013): What do we know about past changes in the water cycle of Central Asian headwaters? A review. Global and Planetary Change, 110: 4-25, doi:10.1016/j.gloplacha.20 13.02.004.

Elmer, F., J. Hoymann, D. Düthmann, S. Vorogushyn, and H. Kreibich (2012): Drivers of flood risk change in residential areas. Natural Hazards & Earth System Sciences, 12(5): 1641–1657, doi:10.5194/nhess-12-1641-2012.

Duethmann, D., S. Anthony, L. Carvalho, and B. Spears (2009): A model-based assessment of non-compliance of phosphorus standards for lakes in England and Wales. International Journal of River Basin Management, 7(3): 197-207, doi:10.1080/15715124.2009.9635383.

Collins, A. L., D. F. McGonigle, R. Evans, Y. Zhang, D. Duethmann, and R. Gooday (2009): Emerging priorities in the management of diffuse pollution at catchment scale. International Journal of River Basin Management, 7(3): 179-185, doi:10.1080/15715124.200 9.9635381.