CV
Peer-reviewed publications:
[17] Magnusson, J., Cluzet, B., Quéno, L., Mott, R., Oberrauch, M., Mazzotti, G., Marty, C., and Jonas, T. : Evaluating methods to estimate the water equivalent of new snow from daily snow depth recordings, Cold Reg. Sci. Technol., 104435, doi: 10.1016/j.coldregions.2025.104435, 2025.
[16] Magnusson, J., Bühler, Y., Quéno, L., Cluzet, B., Mazzotti, G., Webster, C., Mott, R., and Jonas, T.: High-resolution hydrometeorological and snow data for the Dischma catchment in Switzerland, Earth Syst. Sci. Data, 17, 703–717, doi: 10.5194/essd-17-703-2025, 2025.
[15] Cluzet, B., Magnusson, J., Quéno, L., Mazzotti, G., Mott, R., and Jonas, T. : Exploring how Sentinel-1 wet-snow maps can inform fully distributed physically based snowpack models, The Cryosphere, 18, 5753–5767, doi: 10.5194/tc-18-5753-2024, 2024.
[14] Reynolds, D., Quéno, L., Lehning, M., Jafari, M., Berg, J., Jonas, T., Haugeneder, M., and Mott, R. : Seasonal snow-atmosphere modeling : let’s do it, The Cryosphere, 18, 4315–4333, doi: 10.5194/tc-18-4315-2024, 2024.
[13] Quéno, L., Mott, R., Morin, P., Cluzet, B., Mazzotti, G., and Jonas, T. : Snow redistribution in an intermediate-complexity snow hydrology modelling framework, The Cryosphere, 18, 3533–3557, doi: 10.5194/tc-18-3533-2024, 2024.
[12] Berg, J., Reynolds, D., Quéno, L., Jonas, T., Lehning, M., and Mott, R. : A seasonal snowpack model forced with dynamically downscaled forcing data resolves hydrologically relevant accumulation patterns, Front. Earth Sci., 12, doi: 10.3389/feart.2024.1393260, 2024.
[11] Mott, R., Winstral, A., Cluzet, B., Helbig, N., Magnusson, J., Mazzotti, G., Quéno, L., Schirmer, M., Webster, C., and Jonas, T. : Operational snow-hydrological modeling for Switzerland, Front. Earth Sci., 11, doi: 10.3389/feart.2023.1228158, 2023.
[10] Mazzotti, G., Webster, C., Quéno, L., Cluzet, B., and Jonas, T. : Canopy structure, topography, and weather are equally important drivers of small-scale snow cover dynamics in sub-alpine forests, Hydrol. Earth Syst. Sci., 27, 2099–2121, doi: 10.5194/hess-27-2099-2023, 2023.
[9] Helbig, N., Schirmer, M., Magnusson, J., Mäder, F., van Herwijnen, A., Quéno, L., Bühler, Y., Deems, J. S., and Gascoin, S. : A seasonal algorithm of the snow-covered area fraction for mountainous terrain, The Cryosphere, 15, 4607–4624, doi: 10.5194/tc-15-4607-2021, 2021.
[8] Quéno, L., Fierz, C., van Herwijnen, A., Longridge, D., and Wever, N. : Deep ice layer formation in an alpine snowpack : monitoring and modeling, The Cryosphere, 14, 3449–3464, doi: 10.5194/tc-14-3449-2020, 2020.
[7] Quéno, L., Karbou, F., Vionnet, V., and Dombrowski-Etchevers, I. : Satellite-derived products of solar and longwave irradiances used for snowpack modelling in mountainous terrain, Hydrol. Earth Syst. Sci., 24, 2083–2104, doi: 10.5194/hess-24-2083-2020, 2020.
[6] Vionnet, V., Six, D., Auger, L., Dumont, M., Lafaysse, M., Quéno, L., Réveillet, M., Dombrowski-Etchevers, I., Thibert, E., and Vincent, C. : Sub-kilometer Precipitation Datasets for Snowpack and Glacier Modeling in Alpine Terrain, Front. Earth Sci., 7, 182, doi: 10.3389/feart.2019.00182, 2019.
[5] Quéno, L., Vionnet, V., Cabot, F., Vrécourt, D., and Dombrowski-Etchevers, I. : Forecasting and modelling ice layer formation on the snowpack due to freezing precipitation in the Pyrenees, Cold Reg. Sci Technol., 146, 19–31, doi: 10.1016/j.coldregions.2017.11.007, 2018.
[4] Dombrowski-Etchevers, I., Vionnet, V., and Quéno, L. : Pertinence des prévisions météorologiques à l’échelle kilométrique pour la modélisation du manteau neigeux en montagne, La Météorologie, 99, 25–34, doi: 10.4267/2042/63587, 2017.
[3] Vionnet, V., Dombrowski-Etchevers, I., Lafaysse, M., Quéno, L., Seity, Y., and Bazile, E. : Numerical weather forecasts at kilometer scale in the French Alps : evaluation and applications for snowpack modelling, J. Hydrometeor., 17, 2591–2614, doi: 10.1175/JHM-D-15-0241.1, 2016.
[2] Quéno, L., Vionnet, V., Dombrowski-Etchevers, I., Lafaysse, M., Dumont, M., and Karbou, F. : Snowpack modelling in the Pyrenees driven by kilometric-resolution meteorological forecasts, The Cryosphere, 10, 1571–1589, doi: 10.5194/tc-10-1571-2016, 2016.
[1] Sicart, J. E., Espinoza, J. C., Quéno, L., and Medina, M. : Radiative properties of clouds over a tropical Bolivian glacier : seasonal variations and relationship with regional atmospheric circulation, Int. J. Climatol., 36, 3116–3128, doi: 10.1002/joc.4540, 2016.