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Characteristics of tropical cyclones in high-resolution models in the present climate

  • Daniel A. Shaevitz
  • , Suzana J. Camargo
  • , Adam H. Sobel
  • , Jeffrey A. Jonas
  • , Daehyun Kim
  • , Arun Kumar
  • , Timothy E. Larow
  • , Young Kwon Lim
  • , Hiroyuki Murakami
  • , Kevin A. Reed
  • , Malcolm J. Roberts
  • , Enrico Scoccimarro
  • , Pier Luigi Vidale
  • , Hui Wang
  • , Michael F. Wehner
  • , Ming Zhao
  • , Naomi Henderson
  • Columbia University
  • NASA Goddard Institute for Space Studies
  • University of Washington
  • National Oceanic and Atmospheric Administration
  • Florida State University
  • NASA Goddard Space Flight Center
  • University of Hawai'i at Mānoa
  • Met Office
  • Istituto Nazionale Di Geofisica E Vulcanologia
  • Euro-Mediterranean Center on Climate Change
  • University of Reading
  • Lawrence Berkeley National Laboratory

Research output: Contribution to journalArticlepeer-review

130 Scopus citations

Abstract

The global characteristics of tropical cyclones (TCs) simulated by several climate models are analyzed and compared with observations. The global climate models were forced by the same sea surface temperature (SST) fields in two types of experiments, using climatological SST and interannually varying SST. TC tracks and intensities are derived from each model's output fields by the group who ran that model, using their own preferred tracking scheme; the study considers the combination of model and tracking scheme as a single modeling system, and compares the properties derived from the different systems. Overall, the observed geographic distribution of global TC frequency was reasonably well reproduced. As expected, with the exception of one model, intensities of the simulated TC were lower than in observations, to a degree that varies considerably across models.

Original languageEnglish
Pages (from-to)1154-1172
Number of pages19
JournalJournal of Advances in Modeling Earth Systems
Volume6
Issue number4
DOIs
StatePublished - Dec 2014

Keywords

  • global climate models
  • tropical cyclones

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