Quantification of the Downstream Impact of Extratropical Transition for Typhoon Jangmi and Other Case Studies

The impact of extratropical transition on the midlatitude flow is quantified based on potential vorticity inversion. The detailed study of Typhoon Jangmi (2008) reveals the diabatically enhanced net transport of low-PV air to the tropopause as the key physical process determining the direct impact o...

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Superior document:Wissenschaftliche Berichte des Instituts für Meteorologie und Klimaforschung des Karlsruher Instituts für Technologie
:
Year of Publication:2015
Language:English
Series:Wissenschaftliche Berichte des Instituts für Meteorologie und Klimaforschung des Karlsruher Instituts für Technologie
Physical Description:1 electronic resource (VII, 334 p. p.)
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520 |a The impact of extratropical transition on the midlatitude flow is quantified based on potential vorticity inversion. The detailed study of Typhoon Jangmi (2008) reveals the diabatically enhanced net transport of low-PV air to the tropopause as the key physical process determining the direct impact of ET. Relocation experiments and further case studies show the crucial role of the relative position of the TC and the midlatitude flow for the downstream impact of ET and the reduced predictability. 
546 |a English 
653 |a Atmosphärische Dynamik 
653 |a mittlere Breiten 
653 |a Potentielle Vorticity Inversion 
653 |a Tropischer Wirbelsturm 
653 |a midlatitudes 
653 |a Atmospheric Dynamics 
653 |a jet stream 
653 |a potential vorticity inversion 
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