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Nonlinear dynamics of the near-shore boundary layer of a large lake (Lake Geneva)
Cimatoribus, A. A., Lemmin, U., Bouffard, D., & Barry, D. A. (2018). Nonlinear dynamics of the near-shore boundary layer of a large lake (Lake Geneva). Journal of Geophysical Research C: Oceans, 123(2), 1016-1031. https://doi.org/10.1002/2017JC013531
Minimal model for double diffusion and its application to Kivu, Nyos, and Powell Lake
Toffolon, M., Wüest, A., & Sommer, T. (2015). Minimal model for double diffusion and its application to Kivu, Nyos, and Powell Lake. Journal of Geophysical Research C: Oceans, 120(9), 6202-6224. https://doi.org/10.1002/2015JC010970
Drivers of deep-water renewal events observed over 13 years in the South Basin of Lake Baikal
Tsimitri, C., Rockel, B., Wüest, A., Budnev, N. M., Sturm, M., & Schmid, M. (2015). Drivers of deep-water renewal events observed over 13 years in the South Basin of Lake Baikal. Journal of Geophysical Research C: Oceans, 120(3), 1508-1526. https://doi.org/10.1002/2014JC010449
Interface structure and flux laws in a natural double-diffusive layering
Sommer, T., Carpenter, J. R., Schmid, M., Lueck, R. G., Schurter, M., & Wüest, A. (2013). Interface structure and flux laws in a natural double-diffusive layering. Journal of Geophysical Research C: Oceans, 118(11), 6092-6106. https://doi.org/10.1002/2013JC009166
Boundary mixing in lakes: 2. Combined effects of shear- and convectively induced turbulence on basin-scale mixing
Lorrai, C., Umlauf, L., Becherer, J. K., Lorke, A., & Wüest, A. (2011). Boundary mixing in lakes: 2. Combined effects of shear- and convectively induced turbulence on basin-scale mixing. Journal of Geophysical Research C: Oceans, 116(10), 1-12. https://doi.org/10.1029/2011JC007121
Discovery of a natural CO<SUB>2</SUB> seep in the German North Sea: implications for shallow dissolved gas and seep detection
McGinnis, D. F., Schmidt, M., DelSontro, T., Themann, S., Rovelli, L., Reitz, A., & Linke, P. (2011). Discovery of a natural CO2 seep in the German North Sea: implications for shallow dissolved gas and seep detection. Journal of Geophysical Research C: Oceans, 116, 1-12. https://doi.org/10.1029/2010JC006557
Fate of rising methane bubbles in stratified waters: how much methane reaches the atmosphere?
McGinnis, D. F., Greinert, J., Artemov, Y., Beaubien, S. E., & Wüest, A. (2006). Fate of rising methane bubbles in stratified waters: how much methane reaches the atmosphere? Journal of Geophysical Research C: Oceans, 111(C9), 1-15. https://doi.org/10.1029/2005JC003183
Observations of a quasi shear-free lacustrine convective boundary layer: stratification and its implications on turbulence
Jonas, T., Stips, A., Eugster, W., & Wüest, A. (2003). Observations of a quasi shear-free lacustrine convective boundary layer: stratification and its implications on turbulence. Journal of Geophysical Research C: Oceans, 108(C10), 3328 (15 pp.). https://doi.org/10.1029/2002JC001440
Radiatively driven convection in an ice-covered lake investigated by using temperature microstructure technique
Jonas, T., Terzhevik, A. Y., Mironov, D. V., & Wüest, A. (2003). Radiatively driven convection in an ice-covered lake investigated by using temperature microstructure technique. Journal of Geophysical Research C: Oceans, 108(C6), 3183 (18 pp.). https://doi.org/10.1029/2002JC001316
Application of k-ϵ turbulence models to enclosed basins: the role of internal seiches
Goudsmit, G. H., Burchard, H., Peeters, F., & Wüest, A. (2002). Application of k-ϵ turbulence models to enclosed basins: the role of internal seiches. Journal of Geophysical Research C: Oceans, 107(C12), 3230 (13 pp.). https://doi.org/10.1029/2001JC000954
Probability density of displacement and overturning length scales under diverse stratification
Lorke, A., & Wüest, A. (2002). Probability density of displacement and overturning length scales under diverse stratification. Journal of Geophysical Research C: Oceans, 107(C12), 3214 (11 pp.). https://doi.org/10.1029/2001JC001154
Radiatively driven convection in ice-covered lakes: observations, scaling, and a mixed layer model
Mironov, D., Terzhevik, A., Kirillin, G., Jonas, T., Malm, J., & Farmer, D. (2002). Radiatively driven convection in ice-covered lakes: observations, scaling, and a mixed layer model. Journal of Geophysical Research C: Oceans, 107(C4), 3032 (16 pp.). https://doi.org/10.1029/2001JC000892
Dynamics of mixed bottom boundary layers and its implications for diapycnal transport in a stratified, natural water basin
Gloor, M., Wüest, A., & Imboden, D. M. (2000). Dynamics of mixed bottom boundary layers and its implications for diapycnal transport in a stratified, natural water basin. Journal of Geophysical Research C: Oceans, 105(C4), 8629-8646. https://doi.org/10.1029/1999jc900303
Vertical turbulent diffusion and upwelling in Lake Baikal estimated by inverse modeling of transient tracers
Peeters, F., Kipfer, R., Hofer, M., Imboden, D. M., & Domysheva, V. (2000). Vertical turbulent diffusion and upwelling in Lake Baikal estimated by inverse modeling of transient tracers. Journal of Geophysical Research C: Oceans, 105(C2), 3451-3464. https://doi.org/10.1029/1999JC900293
Surface turbulence in natural waters: a comparison of large eddy simulations with microstructure observations
Sander, J., Simon, A., Jonas, T., & Wüest, A. (2000). Surface turbulence in natural waters: a comparison of large eddy simulations with microstructure observations. Journal of Geophysical Research C: Oceans, 105(C1), 1195-1207. https://doi.org/10.1029/1999jc900266
Distribution of helium and tritium in Lake Baikal
Hohmann, R., Hofer, M., Kipfer, R., Peeters, F., Imboden, D. M., Baur, H., & Shimaraev, M. N. (1998). Distribution of helium and tritium in Lake Baikal. Journal of Geophysical Research C: Oceans, 103(C6), 12823-12838. https://doi.org/10.1029/97jc02218
Chlorine 36 fallout in the Summit Greenland Ice Core Project ice core
Baumgartner, S., Beer, J., Suter, M., Dittrich-Hannen, B., Synal, H. A., Kubik, P. W., … Johnsen, S. (1997). Chlorine 36 fallout in the Summit Greenland Ice Core Project ice core. Journal of Geophysical Research C: Oceans, 102(C12), 26659-26662. https://doi.org/10.1029/97jc00166
Boundary versus internal diapycnal mixing in stratified natural waters
Goudsmit, G. H., Peeters, F., Gloor, M., & Wüest, A. (1997). Boundary versus internal diapycnal mixing in stratified natural waters. Journal of Geophysical Research C: Oceans, 102(C13), 27903-27914. https://doi.org/10.1029/97jc01861
Beryllium 10 in the Greenland Ice Core Project ice core at Summit, Greenland
Yiou, F., Raisbeck, G. M., Baumgartner, S., Beer, J., Hammer, C., Johnsen, S., … Yiou, P. (1997). Beryllium 10 in the Greenland Ice Core Project ice core at Summit, Greenland. Journal of Geophysical Research C: Oceans, 102(C12), 26783-26794. https://doi.org/10.1029/97jc01265
Horizontal mixing in lakes
Peeters, F., Wüest, A., Piepke, G., & Imboden, D. M. (1996). Horizontal mixing in lakes. Journal of Geophysical Research C: Oceans, 101(C8), 18361-18375. https://doi.org/10.1029/96jc01145