Daniel Nadeau
Regular Member (Co-researcher)
Département de génie civil et de génie des eaux
Université Laval
Daniel.nadeau@gci.ulaval.ca
Étienne Tremblay (MSc Student)
Lackner, G., Domine, F., Nadeau, D., Lafaysse, M., Dumont, M., 2022. Snow properties at the forest–tundra ecotone: predominance of water vapor fluxes even in deep, moderately cold snowpacks. The Cryosphere, 16: 3357–3373. DOI: 10.5194/tc-16-3357-2022.
Lackner, G., Domine, F., Nadeau, D., Parent, A.-C., Anctil, F., Lafaysse, M., Dumont, M., 2022. On the energy budget of a low-Arctic snowpack. The Cryosphere, 16: 127-142, 16. DOI: 10.5194/tc-16-127-2022.
Lackner, G., Nadeau, D., Domine, F., Parent, A.-C., Leonardini, G., Boone, A., Anctil, F., Fortin, V., 2021. The effect of soil on the summertime surface energy budget of a humid subarctic tundra in northern Quebec, Canada. Journal of Hydrometeorology, 22(10): 2547-2564. DOI: 10.1175/JHM-D-20-0243.1.
Helbig, M.J., Waddington, M., Alekseychik, P., Amiro, B., Aurela, M., Barr, A.G., Black, T.A., Blanken, P.D., Cary, S.K., Chen, J., Chi, J., Desai, A.R., Dunn, A., Euskirchen, E.S., Flanagan, L.B., Forbrich, I., Friborg, T., Grelle, A., Harder, S., Heliasz, M., Humphreys, E.R., Ikawa, H., Isabelle, P.-E., Iwata, H., Jassal, R., Korkiakoski, M., Kurbatova, J., Kutzbach, L., Lindroth, A., Ottosson Löfvenius, M., Lohila, A., Mammarella, I., Marsh, P., Maximov, T., Melton, J.R., Moore, P.A., Nadeau, D., Nicholls, E.M., Nilsson, M.B., Ohta, T., Peichl, M., Petrone, R.M., Petrov, R., Prokushkin, A., Quinton, W.L., Reed, D.E., Roulet, N.T., Runkle, B.R.K., Sonnentag, O., Strachan, I.B., Taillardat, P., Tuittila, E.-S., Tuovinen, J.-P., Turner, J., Ueyama, M., Varlagin, A., Wilmking, M., Wofsy, S.C., Zyrianov, V., 2020. Increasing contribution of peatlands to boreal evapotranspiration in a warming climate. Nature Climate Change, 10: 555-560. DOI: 10.1038/s41558-020-0763-7.
Helbig, M.J., Waddington, M., Alekseychik, P., Amiro, B., Aurela, M., Barr, A.G., Black, T.A., Cary, S.K., Chen, J., Chi, J., Desai, A.R., Dunn, A., Euskirchen, E.S., Flanagan, L.B., Friborg, T., Garneau, M., Grelle, A., Harder, S., Heliasz, M., Humphreys, E.R., Ikawa, H., Isabelle, P.-E., Jassal, R., Korkiakoski, M., Kurbatova, J., Kutzbach, L., Lapshina, E., Lindroth, A., Ottosson Löfvenius, M., Lohila, A., Mammarella, I., Marsh, P., Moore, P.A., Maximov, T., Nadeau, D., Nicholls, E.M., Nilsson, M.B., Ohta, T., Peichl, M., Petrone, R.M., Prokushkin, A., Quinton, W.L., Roulet, N.T., Runkle, B.R.K., Sonnentag, O., Strachan, I.B., Taillardat, P., Tuittila, E.-S., Tuovinen, J.-P., Turner, J., Ueyama, M., Varlagin, A., Vesala, T., Wilmking, M., Zyrianov, V., Schulze, C., 2020. The biophysical climate mitigation potential of boreal peatlands during the growing season. Environmental Research Letters, 15, 104004. DOI: 10.1088/1748-9326/abab34.
Tremblay, A., Nadeau, D., Thiboult, A., Garneau, M., 2020. L'eau et la production d'énergie - L'évaporation nette aux réservoirs de l'Eastmain-1 et de Romaine-2. Le Climatoscope, Septembre 2020(2): 69-75.
Maheu, A., Hajji, I., Anctil, F., Nadeau, D., Therrien, R., 2019. Using the maximum entropy production approach to integrate energy budget modelling in a hydrological model. Hydrology and Earth System Sciences, 23(9): 3843–3863. DOI: 10.5194/hess-23-3843-2019.
Peltola, O., Vesala, T., Gao, Y., Räty, O., Alekseychik, P., Aurela, M., Chojnicki, B., Desai, A.R., Dolman, A.J., Euskirchen, E., Friborg, T., Göckede, M., Helbig, M.J., Humphreys, E., Jackson, R.B., Jocher, G., Joos, F., Klatt, J., Knox, S.H., Kowalska, N., Kutzbach, L., Lienert, S., Lohila, A., Mammarella, I., Nadeau, D., Nilsson, M.B., Oechel, W.C., Peichl, M., Pypker, T., Quinton, W., Rinne, J., Sachs, T., Samson, M., Schmid, H., Sonnentag, O., Wille, C., Zona, D., Aalto, T., 2019. Monthly gridded data product of northern wetland methane emissions based on upscaling eddy covariance observations. Earth System Science Data, 11(3): 1263–1289. DOI: 10.5194/essd-11-1263-2019.
Maheu, A., Anctil, F., Gaborit, É., Fortin, V., Nadeau, D., Therrien, R., 2018. A field evaluation of soil moisture modelling with the Soil, Vegetation and Snow (SVS) land surface model using evapotranspiration observations as forcing data. Journal of Hydrology, 558: 532-545. DOI: 10.1016/j.jhydrol.2018.01.065.
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