Articles | Volume 9, issue 2
https://doi.org/10.5194/esd-9-359-2018
https://doi.org/10.5194/esd-9-359-2018
Research article
 | 
16 Apr 2018
Research article |  | 16 Apr 2018

Midlatitude atmospheric circulation responses under 1.5 and 2.0 °C warming and implications for regional impacts

Camille Li, Clio Michel, Lise Seland Graff, Ingo Bethke, Giuseppe Zappa, Thomas J. Bracegirdle, Erich Fischer, Ben J. Harvey, Trond Iversen, Martin P. King, Harinarayan Krishnan, Ludwig Lierhammer, Daniel Mitchell, John Scinocca, Hideo Shiogama, Dáithí A. Stone, and Justin J. Wettstein

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Cited articles

Adler, R. F., Huffman, G. J., Chang, A., Ferraro, R., Xie, P., Janowiak, J., Rudolf, B., Schneider, U., Curtis, S., Bolvin, D., Gruber, A., Susskind, J., and Arkin, P.: The Version 2 Global Precipitation Climatology Project (GPCP) Monthly Precipitation Analysis (1979–Present), J. Hydromet., 4, 1147–1167, 2003.
Baker, H.: The impact of CO2 concentration at 1.5° C global warming on climate extremes, Nat. Clim. Change, in review, 2018.
Baker, H. S., Woollings, T., and Mbengue, C.: Eddy-Driven Jet Sensitivity to Diabatic Heating in an Idealized GCM, J. Climate, 30, 6413–6431, https://doi.org/10.1175/JCLI-D-16-0864.1, 2017.
Barnes, E. A. and Polvani, L.: Response of the midlatitude jets, and of their variability, to increased greenhouse gases in the CMIP5 models, J. Climate, 26, 7117–7135, https://doi.org/10.1175/JCLI-D-12-00536.1, 2013.
Bengtsson, L. and Hodges, K. I.: Storm tracks and climate change, J. Climate, 19, 3518–3543, 2006.
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This study investigates the midlatitude atmospheric circulation response to 1.5°C and 2.0°C of warming using modelling experiments run for the HAPPI project (Half a degree Additional warming, Prognosis & Projected Impacts). While the chaotic nature of the atmospheric flow dominates in these low-end warming scenarios, some local changes emerge. Case studies explore precipitation impacts both for regions that dry (Mediterranean) and regions that get wetter (Europe, North American west coast).
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