The Extratropical Transition of Tropical Cyclones. Part I: Cyclone Evolution and Direct Impacts

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Date

2017-11-01

Autrices et auteurs

Evans, Clark
Wood, Kimberly M.
Aberson, Sim D.
Archambault, Heather M.
Milrad, Shawn M.
Bosart, Lance F.
Corbosiero, Kristen L.
Davis, Christopher A.
Pinto, João R. Dias
Doyle, James

Contributrices et contributeurs

Direction de recherche

Diplôme

Faculté

Science

Département

Department of Atmospheric and Oceanic Sciences

Centre de recherche affilié

Groupe de recherche

Nom de la revue

ISSN de la revue

Titre du volume

Éditeur

American Meteorological Society

Version

https://vocabularies.coar-repositories.org/version_types/c_970fb48d4fbd8a85/

Droits

© 2017 American Meteorological Society.

Licence Creative Commons

Titre alternatif

Résumé

Extratropical transition (ET) is the process by which a tropical cyclone, upon encountering a baroclinic environment and reduced sea surface temperature at higher latitudes, transforms into an extratropical cyclone. This process is influenced by, and influences, phenomena from the tropics to the midlatitudes and from the meso- to the planetary scales to extents that vary between individual events. Motivated in part by recent high-impact and/or extensively observed events such as North Atlantic Hurricane Sandy in 2012 and western North Pacific Typhoon Sinlaku in 2008, this review details advances in understanding and predicting ET since the publication of an earlier review in 2003. Methods for diagnosing ET in reanalysis, observational, and model-forecast datasets are discussed. New climatologies for the eastern North Pacific and southwest Indian Oceans are presented alongside updates to western North Pacific and North Atlantic Ocean climatologies. Advances in understanding and, in some cases, modeling the direct impacts of ET-related wind, waves, and precipitation are noted. Improved understanding of structural evolution throughout the transformation stage of ET fostered in large part by novel aircraft observations collected in several recent ET events is highlighted. Predictive skill for operational and numerical model ET-related forecasts is discussed along with environmental factors influencing posttransition cyclone structure and evolution. Operational ET forecast and analysis practices and challenges are detailed. In particular, some challenges of effective hazard communication for the evolving threats posed by a tropical cyclone during and after transition are introduced. This review concludes with recommendations for future work to further improve understanding, forecasts, and hazard communication.

Description

Mots-clés

Extratropical cyclones, In situ atmospheric observations, Extratropical Transition, Tropical cyclones, Numerical weather prediction/forecasting

Citation

Evans C, Wood KM, Aberson SD, et al. The Extratropical Transition of Tropical Cyclones. Part I: Cyclone Evolution and Direct Impacts. Monthly Weather Review. 2017;145(11):4317-4344. doi:10.1175/mwr-d-17-0027.1

Langue

en

ORCID

URI (Identifiant de ressource uniforme)

DOI

10.1175/mwr-d-17-0027.1

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