Page 41 - Impatti dei cambiamenti climatici sul regime idrologico della Valle d'Aosta
P. 41

Piers M. Forster, Thomas Gasser, Marion Gehlen, Dennis Gilfillan, Thanos Gkritzalis, Luke Gregor, Nicolas
            Andrew Lenton, Sebastian Lienert, Zhu Liu, Danica Lombardozzi, Gregg Marland, Nicolas Metzl, David R.
            Munro, Julia E. M. S. Nabel, Shin-Ichiro Nakaoka, Yosuke Niwa, Kevin O’Brien, Tsuneo Ono, Paul I. Palmer,
            Denis Pierrot, Benjamin Poulter, Laure Resplandy, Eddy Robertson, Christian Rödenbeck, Jörg Schwinger,
            Roland Séférian, Ingunn Skjelvan, Adam J. P. Smith, Adrienne J. Sutton, Toste Tanhua, Pieter P. Tans, Hanqin
            Tian, Bronte Tilbrook, Guido van der Werf, Nicolas Vuichard, Anthony P. Walker, Rik Wanninkhof, Andrew
            J. Watson, David Willis, Andrew J. Wiltshire, Wenping Yuan, Xu Yue, and Sönke Zaehle (2020), Earth System
            Science Data, 12, 3269–3340, 2020, DOI: 10.5194/essd-12-3269-2020.


            Gobiet, A., Kotlarski, S., Beniston, M., Heinrich, G., Rajczak, J., & Stoffel, M. (2014). 21st century climate
            change in the European Alps—a review. Science of the Total Environment, 493, 1138-1151.

            Golombek, R., Kittelsen, S. A., & Haddeland, I. (2012). Climate change: impacts on electricity markets in
            Western Europe. Climatic change, 113(2), 357-370.

            Gaudard, L., Avanzi, F., & De Michele, C. (2018). Seasonal aspects of the energy-water nexus: The case of a
            run-of-the-river hydropower plant. Applied Energy, 210, 604-612.

            Haeberli W., Oerlemans J., Zemp, M., 2019, The future of alpine glaciers and beyond. In: Oxford Research
            Encyclopedia of Climate Science, doi:10.1093/acrefore/9780190228620.013.769.


            Huntington, T. G. (2006). Evidence for intensification of the global water cycle: review and synthesis. Journal
            of Hydrology, 319(1-4), 83-95.

            Huss, M., & Hock, R. (2018). Global-scale hydrological response to future glacier mass loss. Nature Climate
            Change, 8(2), 135.

            IPCC, 2014: Climate Change 2014: Synthesis Report. Contribution of Working Groups I, II and III to the Fifth
            Assessment Report of the Intergovernmental Panel on Climate Change.

            IPCC, 2018, SR1.5: Global warming of 1.5°C. An IPCC Special Report on the impacts of global warming
            of 1.5°C above pre-industrial levels and related global greenhouse gas emission pathways, in the context of

            strengthening the global response to the threat of climate change, sustainable development, and efforts to
            eradicate poverty [V. Masson-Delmotte, P. Zhai, H. O. Pörtner, D. Roberts, J. Skea, P.R. Shukla, A. Pirani,
            W. Moufouma-Okia, C. Péan, R. Pidcock, S. Connors, J. B. R. Matthews, Y. Chen, X. Zhou, M. I. Gomis, E.
            Lonnoy, T. Maycock, M. Tignor, T. Waterfield (eds.)]. In Press.

            IPCC, 2019a, SRCCL. Special Report on Climate Change and Land (https://www.ipcc.ch/report/srccl/).


            IPCC, 2019b, SROCC: IPCC Special Report on the Ocean and Cryosphere in a Changing Climate [H.-O.
            Pörtner, D.C. Roberts, V. Masson-Delmotte, P. Zhai, M. Tignor, E. Poloczanska, K. Mintenbeck, M. Nicolai,
            A. Okem, J. Petzold, B. Rama, N. Weyer (eds.)]. In press.

            Lehner, B., Czisch, G., & Vassolo, S. (2005). The impact of global change on the hydropower potential of
            Europe: a model-based analysis. Energy Policy, 33(7), 839-855.


            Marty, C., Schlögl, S., Bavay, M., & Lehning, M. (2017). How much can we save? Impact of different emis-
            sion scenarios on future snow cover in the Alps. The Cryosphere, 11(1), 517.











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