Have a personal or library account? Click to login
Hydrogeology of alpine lakes in the Northern Calcareous Alps: a comparative study on the role of groundwater in Filblingsee and Eibensee Cover

Hydrogeology of alpine lakes in the Northern Calcareous Alps: a comparative study on the role of groundwater in Filblingsee and Eibensee

Open Access
|Dec 2022

References

  1. Argentin A-L., Robl, J., Prasicek, G., Hergarten, S., Hölbling D., Abad, L., Dabiri, Z., 2021. Controls on the formation and size of potential landslide dams and dammed lakes in the Austrian Alps. Natural Hazards Earth System Science, 21, pp. 1615-1637. https://doi.org/10.5194/nhess-21-1615-2021
  2. Bartels, A., Berninger U.-G., Hohenberger, F., Wickham, S., Petermann, J.S., (2021) Littoral macroinvertebrate communities of alpine lakes along an elevational gradient (Hohe Tauern National Park, Austria). PLoS ONE 16:e025561910.1371/journal.pone.0255619862928134843463
  3. Biondic´, B., Biondic´R., Measki H., 2010. The conceptual hydrogeological model of the Plitvice lakes. Geologia Croatica, 63/2, pp. 195-206. https://doi.org/104154/gc.2010.1710.4154/gc.2010.17
  4. Buckel, J., Otto, J.C., Prasicek, G., Keuschnig, M., 2018. Glacial lakes in Austria – Distribution and formation since the Little Ice Age. Global and Planetary Change, 164, pp. 39-51. https://doi.org/10.1016/j.gloplacha.2018.03-003
  5. Caine, J.S., Evans, J.P., Forster, C.B., 1996. Fault zone architecture and permeability structure. Geology (Boulder) 24, pp. 1025–1028.10.1130/0091-7613(1996)024<1025:FZAAPS>2.3.CO;2
  6. Chen, Y.N., Xu, C.C., Chen, Y.P., 2010. Response of glazial-lakes outburst floods to climate change in the Yarkant River basin on northern slope of Karakorum Mountains, China. Quarternary International. 226 (1/2), pp. 75-81.10.1016/j.quaint.2010.01.003
  7. Egger, H., van Husen, D., 2003. Geologische Karte der Republik Österreich, Blatt 64 Strasswalchen. Geologische Bundesanstalt, Wien.
  8. Emmer, A., 2018. GLOFs in the WOS: bibliometrics, geographies and global trends of research on glacial lakes outburst floods (Web of Science, 1979-2016). Natural Hazards Earth System Science, 13, pp. 813-827. https://doi.org/10.5194/nhess-18-813-2018
  9. Emmer, A., Curin, V., 2021. Can a dam type of an alpine lake be derived from lake geometry? A negative result. Journal of Mountain Science. 18/3, pp. 614-621. https://doi.org/10.1007/s11629-020-6003-9
  10. Fürlinger, F., 2019. Hydrogeologische Konzeptstudie im Einzugsgebiet eines Bergsees am Rande der Nördlichen Kalkalpen. Unpublished Masterthesis, Paris Lodron University of Salzburg, 67 pp.
  11. Furtak, H., Langguth, H-R., 1967. Zur hydrochemischen Kennzeichnung von Grundwässern und Grundwassertypen mittels Kennzahlen. Mem. IAH Kongress, 7, pp. 89-96.
  12. Gurrieri, J.T., Furniss, G., 2004. Estimation of groundwater exchange in alpine lakes using non-steady mass-balance methods. Journal of Hydrology, 297, pp. 187-208. https://doi.org/10.1016/jhydrol.2004.04.021.
  13. Hartmann, A., Goldscheider, N., Wagener, T., Lange, J., Weiler, M., 2014. Karst water resources in a changing world: Review of hydrological modelling approaches. Review of Geophysics. 52, pp. 218-242. https://doi.org/10.1002/2013RG000443
  14. Haude, W., 1954. Zur praktischen Bestimmung der aktuellen und potentiellen Evaporation und Evapotranspiration. Mitteilungen des Deutschen Wetterdienstes, Bad Kissingen, 8 pp.
  15. Hilberg, S., Schneider, J.F., 2011. The Aquifer Characteristics of the Dolomite Formation – a new Approach for providing Drinking Water in the Northern Calcareous Alps Region in Germany and Austria. Water Resource Management, 25, pp. 2705-2729. https://doi.org/10.1007/s11269-011-9834-x
  16. Hood, J.L, Roy, J.W., Hayashi, M., 2006. Importance of groundwater in the water balance of an alpine headwater lake. Geophysical Research Letters, 33, L13405, https://doi.org/10.1029/2006GL026611
  17. Husen van, D., 1989. Geologische Karte der Republik Österreich, Blatt 65 Mondsee. Geologische Bundesanstalt, Wien.
  18. Land Salzburg, Hydrographischer Dienst, 2019. Meteorologie Station Hintersee/Almbach, No. 103846. https://www.salzburg.gv.at/wasser/hydro/#/Meteorologie?station=103846 (accessed on 14. July 2022)
  19. Merck, 1980. Komplexometrische Bestimmungsmethoden mit Titriplex. Reagenzien Merck, 3. Auflage.
  20. Mergili, M., Schneider J.F., 2011. Regional-scale analysis of lake outburst hazards in the southwestern Pamir, Tajikistan, based on remote sensing and GIS. Natural Hazards Earth System Science, 11, pp. 1447-1462. https://doi.org/10.5194/nhess-11-1447-2011
  21. Milanovic, P., 2021. Dams and reservoirs in karst? Keep away or accept the challenges. Hydrogeology Journal, 29, pp. 89-100. https://doi.org/10.1007/s10040-020-02273-0
  22. Pestal, G., Hejl, E., Braunstingl, R., Schuster, R., 2009 Geologische Karte von Salzburg 1:200.000, Erläuterungen. Geologische Bundesanstalt, Wien.
  23. Pfleiderer, S., Klein, P., Reitner, H., Heinrich, M., 2006. The Hydrogeology in the Northern Calcareous Alps between the Rivers Enns and Ybbs. Austrian Journal of Earth Sciences, 99, pp. 4-10.
  24. Plan, L (2016): Oberflächenkarstformen. In: Spötl, Ch., Plan, L. Christian E. (Hrsg.) Karst und Höhlen in Österreich. -Linz Oberösterreichisches Landesmuseum, pp. 11-22.
  25. Qin, D.H., Yao, T.D., Ding, Y.J., 2016. Glossary of Cryosphere Science. Beijing: China Metropol Press.
  26. Ravbar, N., Mayaud, C., Blatnik. M., Petric, M., 2021. Determination of inundation areas within karst poljes and intermittent lakes for the purposes of ephemeral flood mapping. Hydrogeology Journal, 29, pp. 213-218. https://doi.org/10.1007/s10040-020-02268-x
  27. Rodriguez-Rodriguez, M., Fernández-Ayuso, A., Hayashi, M., Moral, F., 2018. Using water temperature, electrical conductivity, and pH to characterize surface – groundwater relations in a shallow ponds system (Doñana National Park, SW Spain). Water, 10, 1406. https://doi.org/10.3390/w10101406
  28. Roy, J.W., Hayashi, M., 2008. Groundwater exchange with two small alpine lakes in the Canadian Rockies. Hydrological Processes, 22, pp. 2838-2846. https://doi.org/10.1002/hyp.6995
  29. Sändler, F., 2019. Filblingsee – Entwicklung eines konzeptionellen hydrogeologischen Modells. Unpublished Masterthesis, Paris Lodron University Salzburg, 94 pp.
  30. Senetra, A., Dynowski, P., Cieslak, I., Zrobek-Sokolnik, A., 2020. An Evaluation of the Impact of Hiking Tourism on the Ecological Status of Alpine Lakes – A Case Study of the valley of Dolina Pieciu Stawow Polskich in the Tatra Mountains. Sustainability, 12, 2963. https://doi.org/10.3390/su12072963
  31. Toth, A., Kovacs, S., Kovacs, J., Madl-Szonyi, J., 2022. Springs regarded as hydraulic features and interpreted in the context of basin-scale groundwater-flow. Journal of Hydrology, 610, 127907. https://doi.org/10.1016/jhydrol2022.127907
  32. Vrsalovic A., Andric, I., Bzjak, N., Bonacci, O., 2022. Karst Lake´s Dynamics Analysis as a Tool for Aquifer Characterization at Field scale, Example of Cryptodepression – Red lake in Croatia. Water, 14, 830. https://doi.org/10.3390/w14050830
  33. Winter T.C., 1999. Relation of streams, lakes, and wetlands to groundwater flow systems. Hydrogeology Journal, 7, pp. 28-45.10.1007/s100400050178
  34. Yao, X., Liu, S., Han, L., Sun, M., Zhao, L., 2018. Definition and classification system of glacial lake for inventory and hazards study. Journal of Geographical Science, 28(2), pp. 193-205. https://doi.org/10.1007/s11442-018-01467-z
DOI: https://doi.org/10.17738/ajes.2022.0010 | Journal eISSN: 2072-7151 | Journal ISSN: 0251-7493
Language: English
Page range: 199 - 212
Submitted on: Aug 23, 2022
Accepted on: Dec 13, 2022
Published on: Dec 31, 2022
Published by: Austrian Geological Society
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2022 Sylke Hilberg, Florian Sändler, Florian Fürlinger, published by Austrian Geological Society
This work is licensed under the Creative Commons Attribution 4.0 License.