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Fluid dynamics / Tropical cyclone / Cyclonic separation / Eye / Rapid deepening / Cyclone / Meteorology / Atmospheric sciences / Vortices


Quarterly Journal of the Royal Meteorological Society Q. J. R. Meteorol. Soc. 136: 549–551, January 2010 Part B Notes and Correspondence On an analytical model for the rapid intensification of tropical
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Document Date: 2011-10-21 13:47:03


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City

Monterey / Miami / Montreal / /

Country

United States / Germany / /

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Event

Natural Disaster / Environmental Issue / /

Facility

University of Munich / Colorado State University / Meteorological Institute / /

IndustryTerm

present solutions / separable solution / analytical solution / linear surface drag law / time-dependent solution / /

NaturalFeature

Montgomery MT / /

Organization

Hurricane Research Division / Colorado State University / Meteorological Institute / Royal Meteorological Society / National Science Foundation / National Oceanic and Atmospheric Administration / German Research Council / NOAA’s Hurricane Research Division / US Office / United States Federal Government / Naval Postgraduate School / University of Munich / /

Person

Roger K. Smithc / Rotunno / Michael T. Montgomery / Michael T. Montgomerya / Kerry Emanuel / /

Position

hurricane model / /

ProvinceOrState

Florida / California / /

Technology

thermodynamics / ATM / simulation / /

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