Publications
In revision
- Ménégoz, M., Santolaria-Otín, M., Terray, L., Lalande, M., García-Serrano, J., Gastineau, G.: Forced circulation changes explains a large fraction of the anthropogenic warming in HMA, submitted to Earth System Dynamics.
Published
42. Philippot, N., F. Couvreux, C. Rio, and M. Ménégoz, 2026: A Parametrization of the Convective Boundary Layer with Subgrid Orography. J. Atmos. Sci., 83, 881–898, https://doi.org/10.1175/JAS-D-25-0192.1.
41. Castellanos, I., Ménégoz, M., Blanchet, J., Beaumet, J., Gallée, H., Moreno-Chamarro, E., Staquet, C., and Fettweis, X.: Projected elevation-dependent warming in the Alps: contrasting free-atmosphere and surface trends with surface energy balance drivers, Earth Syst. Dynam., 17, 581–605, https://doi.org/10.5194/esd-17-581-2026, 2026.
40. Legrand, C., Hingray, B., Wilhelm, B., and Ménégoz, M.: Assessing downscaling methods to simulate hydrologically relevant weather scenarios from a global atmospheric reanalysis: case study of the upper Rhône River (1902–2009), Hydrol. Earth Syst. Sci., 28, 2139–2166, https://doi.org/10.5194/hess-28-2139-2024, 2024.
39. Bacer, S., Beaumet, J., Ménégoz, M., Gallée, H., Le Bouëdec, E., and Staquet, C.: Impact of climate change on persistent cold-air pools in an alpine valley during the 21st century, Weather Clim. Dynam., 5, 211–229, https://doi.org/10.5194/wcd-5-211-2024, 2024.
38. Lavorel, S., Ménissier, T., et al., Comment rendre les Conventions citoyennes pour le climat encore plus démocratiques ? https://theconversation.com/comment-rendre-les-conventions-citoyennes-pour-le-climat-encore-plus-democratiques-201521.
37. Lalande, M., Ménégoz, M., Krinner, G., Ottlé, C., and Cheruy, F.: Improving climate model skill over High Mountain Asia by adapting snow cover parameterization to complex-topography areas, The Cryosphere, 17, 5095–5130, https://doi.org/10.5194/tc-17-5095-2023, 2023.
36. Clauzel, L., Ménégoz, M., Gilbert, A. et al., Sensitivity of Alpine glaciers to anthropogenic atmospheric forcings: case study of the Argentière glacier, Geophysical Research Letters, 50(13), p.e2022GL100363,https://doi.org/10.1029/2022GL100363, 2023.
35. Junquas, C., Heredia, M.B., Condom, T., Ruiz-Hernández, J.C., Campozano, L., Dudhia, J., Espinoza, J.C., Ménégoz, M. et al. 2022. Regional climate modeling of the diurnal cycle of precipitation and associated atmospheric circulation patterns over an Andean glacier region (Antisana, Ecuador). Climate Dynamics, 58(11-12), pp.3075-3104.
34. Bacer, S., Jomaa, F., Beaumet, J., Gallée, H., Le Bouëdec, E., Ménégoz, M., and Staquet, C.: Impact of climate change on wintertime European atmospheric blocking, Weather Clim. Dynam., 3, 377–389, https://doi.org/10.5194/wcd-3-377-2022, 2022.
33. Réveillet, M., Dumont, M., Gascoin, S., Lafaysse, M., Nabat, P., Ribes, A., Nheili, R., Tuzet, F., Ménégoz, M., et al., 2022. Black carbon and dust alter the response of mountain snow cover under climate change. Nature communications, 13(1), p.5279.
32. Döscher, R., […], Ménégoz, M. et al.: The EC-Earth3 Earth system model for the Coupled Model Intercomparison Project 6, Geosci. Model Dev., 15, 2973–3020, https://doi.org/10.5194/gmd-15-2973-2022, 2022.
31. Lalande, M., Ménégoz, M. et al., 2021: Climate change in the High Mountain Asia in CMIP6, Earth Syst. Dynam., 12, 1061–1098, https://doi.org/10.5194/esd-12-1061-2021.
30. Beaumet, J., Ménégoz, M. et al., 2021. Twentieth century temperature and snow cover changes in the French Alps. Regional Environmental Change, 21(4), p.114.
29. Ménégoz, M., Valla, E., Jourdain, N. C., Blanchet, J., Beaumet, J., Wilhelm, B., Gallée, H., Fettweis, X., Morin, S., and Anquetin, S., 2020: Contrasting seasonal changes in total and intense precipitation in the European Alps from 1903 to 2010, Hydrol. Earth Syst. Sci., 24, 5355–5377, https://doi.org/10.5194/hess-24-5355-2020.
28. Wagnon, P., Brun, F., Khadka, A., Berthier, E., Shresta, D., Vincent, C., Arnaud, Y., Six, D., Dehecq, A., Ménégoz, M., Jomelli, V.: Reanalysing the 2007-19 glaciological mass balance series of Mera Glacier (Nepal, Central Himalaya) using geodetic mass balance, 2020, Journal of Glaciology, pp.1-9.
27. Cheruy, F., Ducharne, A., Hourdin, F., […], Ménégoz, M., et al., 2020, Improved Near-Surface Continental Climate in IPSL‐CM6A‐LR by Combined Evolutions of Atmospheric and Land Surface Physics, Journal of Advances in Modeling Earth Systems, Vol.12, Is. 10, 1942-2466, doi.org/10.1029/2019MS002005.
26. Santolaria-Otín, M., García-Serrano, J., Ménégoz, M., and Bech, J., 2020: On the observed connection between Arctic sea ice and Eurasian snow in relation to the winter North Atlantic Oscillation, Environmental Research Letters, DOI: 10.1088/1748-9326/abad57.
25. Mudryk, L., Santolaria-Otín, M., Krinner, G., Ménégoz, M. et al.: Historical Northern Hemisphere snow cover trends and projected changes in the CMIP6 multi-model ensemble, The Cryosphere, 14, 2495–2514, https://doi.org/10.5194/tc-14-2495-2020, 2020.
24. Massonnet, F., Ménégoz, M. et al., Replicability of the EC-Earth3 Earth System Model under a change in computing environment, Geosci. Model Dev., 13, 1165–1178, https://doi.org/10.5194/gmd-13-1165-2020, 2020.
23. Krinner, […], Ménégoz, M., et al., 2018, 2018: ESM-SnowMIP: assessing snow models and quantifying snow-related climate feedbacks, Geosci. Model Dev., 11, 5027-5049, https://doi.org/10.5194/gmd-11-5027-2018, 2018.
22. Smith, D. M., […], Ménégoz, M., et al., 2018, Predicted chance that global warming will temporarily exceed 1.5°C, Geophysical Research Letters, https://doi.org/10.1029/2018GL079362
21. Ménégoz, M., Bilbao, R., Bellprat, O., Guemas, V., Doblas-Reyes, F.J., 2018: Forecasting the climate response to volcanic eruptions: prediction skill related to stratospheric aerosol forcing, Environ. Res. Lett.,13, 064022, http://iopscience.iop.org/article/10.1088/1748-9326/aac4db
20. Manubens, N., […], Ménégoz, M. et al., 2018 : s2dverication: an R package for forecast verification, Journal of Environmental Modeling and Software, Vol 103, p. 29-42, doi.org/10.1016/j.envsoft.2018.01.018
19. Ménégoz, M. et al., 2017: Modulation of the climate response to a Pinatubo eruption by the Atlantic Multi-decadal Oscillation, Climate Dynamics, doi 10.1007/s00382-017-3986-1.
18. Rabatel, A., […], Ménégoz, M. et al., 2017, Toward an imminent extinction of Colombian glaciers?, in press for Geografiska Annaler, doi: 10.1080/04353676.2017.1383015.
17. Swingedouw, […], Ménégoz, M. et al., 2017: Impact of explosive volcanic eruptions on the main climate variability modes, review for Global and Planetary Changes, Vol. 150, P. 24–45.
16. Siegert, S., […], Ménégoz, M., et al., 2017: Detecting improvements in forecast correlation skill: Statistical testing and power analysis. Monthly Weather Review.
15. Favier, V., […]., Ménégoz, M., et al., 2016: Atmospheric drying as the main driver of dramatic glacier wastage in the southern Indian Ocean, Scientific Reports 6, 32396.
14. Jacobi, H.-W., Lim, S., Ménégoz, M. et al., 2015: Black carbon in snow in the upper Himalayan Khumbu Valley, Nepal: observations and modeling of the impact on snow albedo, melting, and radiative forcing, The Cryosphere, 9, 1685-1699.
13. Verfaillie, D, […], Ménégoz, M. et al., 2015: Recent glacier decline in the Kerguelen Islands (49°S, 69°E) derived from modeling, field observations and satellite data, J. Geophys. Res. Earth Surf., 120, 637–654.
12. Ménégoz, M. et al., 2014: Snow cover sensitivity to black carbon deposition in the Himalaya : from atmospheric and ice core measurements to regional climate simulations, Atmos. Chem. Phys., 14, 4237-4249. Himalayan melt, Research highlight in Nature Climate Change, 4, 420.
11. Krinner, G., […], Ménégoz, M. et al., 2014: Oceanic forcing of Antarctic climate change : A study using a stretched-grid atmospheric general circulation model, J. Climate, 27, 5786–5800.
10. Wagnon, P., […]., Ménégoz, M., et al., 2013: Seasonal and annual mass balances of Mera and Pokalde glaciers (Nepal) since 2007, The Cryosphere, 7, 1769-1786.
9. Ménégoz, M., et al., 2013b: Precipitation and snow cover in the Himalaya : from reanalysis to regional climate simulations, Hydrol. Earth Syst. Sci., 17, 3921-3936.
8. Ménégoz, M. et al., 2013: Boreal and temperate snow cover variations induced by black carbon emissions in the middle of the 21st century, The Cryosphere, 7, 537-554.
7. Rabatel, A., […], Ménégoz, M., et al., 2013: Current state of glaciers in the tropical Andes: a multi-century perspective on glacier evolution and climate change, The Cryosphere, 7, 81-102.
6. Brutel-Vuilmet, C., Ménégoz, M. et al., 2013: An analysis of present and future seasonal Northern Hemisphere land snow cover simulated by CMIP5 coupled climate models, The Cryosphere, 7, 67-80.
5. Yasunari, T.J., […], Ménégoz, M., et al., 2013: What are the true range of black carbon dry deposition and the related snow albedo reduction over Himalayan glaciers during pre-monsoon periods?, Atmosph. Env., doi:10.1016/j.atmosenv.2012.03.031.
4. Gouttevin, I., Ménégoz, M. et al., 2012: How the insulating properties of snow affect soil carbon distribution in the continental Arctic area?, J. Geophys. Res., 117, G02020.
3. Ménégoz, M. et al., 2012: How does the atmospheric variability drive the aerosol residence time in the Arctic region?, Tellus B, 64, 11596.
2. Ménégoz, M. et al., 2010: Winter interactions between aerosols and weather regimes in the North-Atlantic European region, J. Geophys. Res., 115, D09201.
1. Ménégoz, M. et al., 2009: Equilibrium of sinks and sources of sulphates over Europe: Comparison between a six-year numerical simulation and EMEP observations, Atmos. Chem. Phys., 9, 4505-4519.
La fédération
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