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Tropical cyclone integrated kinetic energy in an ensemble of HighResMIP simulations

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10.1029/2020GL090963
 
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Kreussler, Philip
Caron, Louis-PhilippeMés informació
Wild, SimonMés informació
Loosveldt Tomas, Saskia
Chauvin, Fabrice
Moine, Marie‐Pierre
Roberts, Malcolm J.
Ruprich-Robert, YohanMés informació
Seddon, Jon
Valcke, Sophie
Vannière, Benoît
Vidale, Pier Luigi
Document typeArticle
Defense date2021
PublisherAmerican Geophysical Union
Rights accessOpen Access
All rights reserved. This work is protected by the corresponding intellectual and industrial property rights. Without prejudice to any existing legal exemptions, reproduction, distribution, public communication or transformation of this work are prohibited without permission of the copyright holder
ProjectPRIMAVERA - PRocess-based climate sIMulation: AdVances in high resolution modelling and European climate Risk Assessment (EC-H2020-641727)
STARS - SupercompuTing And Related applicationS Fellows Program (EC-H2020-754433)
Abstract
This study investigates tropical cyclone integrated kinetic energy, a measure which takes into account the intensity and the size of the storms and which is closely associated with their damage potential, in three different global climate models integrated following the HighResMIP protocol. In particular, the impact of horizontal resolution and of the ocean coupling are assessed. We find that, while the increase in resolution results in smaller and more intense storms, the integrated kinetic energy of individual cyclones remains relatively similar between the two configurations. On the other hand, atmosphere‐ocean coupling tends to reduce the size and the intensity of the storms, resulting in lower integrated kinetic energy in that configuration. Comparing cyclone integrated kinetic energy between a present and a future scenario did not reveal significant differences between the two periods.
CitationKreussler, P. [et al.]. Tropical cyclone integrated kinetic energy in an ensemble of HighResMIP simulations. "Geophysical Research Letters", 2021, vol. 48, núm. 5, e2020GL090963. 
URIhttp://hdl.handle.net/2117/342136
DOI10.1029/2020GL090963
ISSN1944-8007
Publisher versionhttps://agupubs.onlinelibrary.wiley.com/doi/abs/10.1029/2020GL090963
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