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An automated calibration framework and open source tools for 3D lake hydrodynamic models
Baracchini, T., Hummel, S., Verlaan, M., Cimatoribus, A., Wüest, A., & Bouffard, D. (2020). An automated calibration framework and open source tools for 3D lake hydrodynamic models. Environmental Modelling and Software, 134, 104787 (16 pp.). https://doi.org/10.1016/j.envsoft.2020.104787
Data assimilation of in situ and satellite remote sensing data to 3D hydrodynamic lake models: a case study using Delft3D-FLOW v4.03 and OpenDA v2.4
Baracchini, T., Chu, P. Y., Šukys, J., Lieberherr, G., Wunderle, S., Wüest, A., & Bouffard, D. (2020). Data assimilation of in situ and satellite remote sensing data to 3D hydrodynamic lake models: a case study using Delft3D-FLOW v4.03 and OpenDA v2.4. Geoscientific Model Development, 13(3), 1267-1284. https://doi.org/10.5194/gmd-13-1267-2020
Meteolakes: an operational online three-dimensional forecasting platform for lake hydrodynamics
Baracchini, T., Wüest, A., & Bouffard, D. (2020). Meteolakes: an operational online three-dimensional forecasting platform for lake hydrodynamics. Water Research, 172, 115529 (12 pp.). https://doi.org/10.1016/j.watres.2020.115529
Subaquatic slope instabilities: the aftermath of river correction and artificial dumps in Lake Biel (Switzerland)
Dubois, N., Råman Vinnå, L., Rabold, M., Hilbe, M., Anselmetti, F. S., Wüest, A., … Girardclos, S. (2020). Subaquatic slope instabilities: the aftermath of river correction and artificial dumps in Lake Biel (Switzerland). Sedimentology, 67(2), 971-990. https://doi.org/10.1111/sed.12669
Sauerstoffzehrung in Seen
Kiefer, I., Steinsberger, T., Wüest, A., & Müller, B. (2020). Sauerstoffzehrung in Seen. Aqua & Gas, 100(7/8), 62-70.
Improved modeling of sediment oxygen kinetics and fluxes in lakes and reservoirs
Man, X., Bierlein, K. A., Lei, C., Bryant, L. D., Wüest, A., & Little, J. C. (2020). Improved modeling of sediment oxygen kinetics and fluxes in lakes and reservoirs. Environmental Science and Technology, 54(5), 2658-2666. https://doi.org/10.1021/acs.est.9b04831
Sanierung der Mittellandseen: Bewertung möglicher seeinterner Massnahmen
Müller, B., & Wüest, A. (2020). Sanierung der Mittellandseen: Bewertung möglicher seeinterner Massnahmen. Eawag – Das Wasserforschungsinstitut des ETH-Bereichs.
Assessing subaquatic mass movement hazards: an integrated observational and hydrodynamic modelling approach
Råman Vinnå, L., Bouffard, D., Wüest, A., Girardclos, S., & Dubois, N. (2020). Assessing subaquatic mass movement hazards: an integrated observational and hydrodynamic modelling approach. Water Resources Management, 34, 4133-4146. https://doi.org/10.1007/s11269-020-02660-y
Hypolimnetic oxygen depletion rates in deep lakes: effects of trophic state and organic matter accumulation
Steinsberger, T., Schwefel, R., Wüest, A., & Müller, B. (2020). Hypolimnetic oxygen depletion rates in deep lakes: effects of trophic state and organic matter accumulation. Limnology and Oceanography. https://doi.org/10.1002/lno.11578
Horizontal transport under wind-induced resonance in stratified waterbodies
Ulloa, H. N., Constantinescu, G., Chang, K., Horna-Munoz, D., Hames, O., & Wüest, A. (2020). Horizontal transport under wind-induced resonance in stratified waterbodies. Physical Review Fluids, 5(5), 054503 (20 pp.). https://doi.org/10.1103/PhysRevFluids.5.054503
Le Lac de Zurich en ligne. Prévisions hydrodynamiques 3D en temps-réel sur meteolakes.ch
Baracchini, T., Bärenzung, K., Bouffard, D., & Wüest, A. (2019). Le Lac de Zurich en ligne. Prévisions hydrodynamiques 3D en temps-réel sur meteolakes.ch. Aqua & Gas, 99(12), 24-29.
Convection in Lakes
Bouffard, D., & Wüest, A. (2019). Convection in Lakes. Annual Review of Fluid Mechanics, 51, 189-215. https://doi.org/10.1146/annurev-fluid-010518-040506
Under-ice convection dynamics in a boreal lake
Bouffard, D., Zdorovennova, G., Bogdanov, S., Efremova, T., Lavanchy, S., Palshin, N., … Ulloa, H. N. (2019). Under-ice convection dynamics in a boreal lake. Inland Waters, 9(2), 142-161. https://doi.org/10.1080/20442041.2018.1533356
Using lakes and rivers for extraction and disposal of heat: estimate of regional potentials
Gaudard, A., Wüest, A., & Schmid, M. (2019). Using lakes and rivers for extraction and disposal of heat: estimate of regional potentials. Renewable Energy, 134, 330-342. https://doi.org/10.1016/j.renene.2018.10.095
Combined effects of pumped-storage operation and climate change on thermal structure and water quality
Kobler, U. G., Wüest, A., & Schmid, M. (2019). Combined effects of pumped-storage operation and climate change on thermal structure and water quality. Climatic Change, 152, 427-443. https://doi.org/10.1007/s10584-018-2340-x
Beurteilung see-interner Massnahmen zur beschleunigten Sanierung des Zugersees (inkl. Kostenschätzungen Bau und Betrieb)
Müller, B., Gaudard, A., & Wüest, A. (2019). Beurteilung see-interner Massnahmen zur beschleunigten Sanierung des Zugersees (inkl. Kostenschätzungen Bau und Betrieb). Eawag.
Oxygen consumption in seasonally stratified lakes decreases only below a marginal phosphorus threshold
Müller, B., Steinsberger, T., Schwefel, R., Gächter, R., Sturm, M., & Wüest, A. (2019). Oxygen consumption in seasonally stratified lakes decreases only below a marginal phosphorus threshold. Scientific Reports, 9, 18054 (7 pp.). https://doi.org/10.1038/s41598-019-54486-3
Resolving biogeochemical processes in lakes using remote sensing
Nouchi, V., Kutser, T., Wüest, A., Müller, B., Odermatt, D., Baracchini, T., & Bouffard, D. (2019). Resolving biogeochemical processes in lakes using remote sensing. Aquatic Sciences, 81(2), 27 (13 pp.). https://doi.org/10.1007/s00027-019-0626-3
Global warming affects nutrient upwelling in deep lakes
Schwefel, R., Müller, B., Boisgontier, H., & Wüest, A. (2019). Global warming affects nutrient upwelling in deep lakes. Aquatic Sciences, 81(3), 50 (11 pp.). https://doi.org/10.1007/s00027-019-0637-0
Convection‐diffusion competition within mixed layers of stratified natural waters
Sepúlveda Steiner, O., Bouffard, D., & Wüest, A. (2019). Convection‐diffusion competition within mixed layers of stratified natural waters. Geophysical Research Letters, 46(13), 13199-13208. https://doi.org/10.1029/2019GL085361
 

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