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Aerodynamics / Boundary layer / Ekman layer / Planetary boundary layer / Navier–Stokes equations / Turbulence / Vortex / Lift / Wind gradient / Fluid dynamics / Fluid mechanics / Aerospace engineering


Quarterly Journal of the Royal Meteorological Society Q. J. R. Meteorol. Soc. 136: 1665–1670, October 2010 Part A Hurricane boundary-layer theory Roger K. Smitha *and Michael T. Montgomeryb,c
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Document Date: 2011-10-21 13:47:09


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City

Monterey / Munich / Miami / Lystadt / San Diego / Dordrecht / /

Country

Germany / United States / Netherlands / US / /

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Event

Natural Disaster / /

Facility

University of Munich / Wiley Online Library / Meteorological Institute / /

IndustryTerm

non-local mixing algorithm / hurricane turbulent energy / turbulent kinetic energy / Online Library / /

NaturalFeature

Montgomery MT / lake Michigan / Montgomery MT. / /

Organization

Hurricane Research Division / Meteorological Institute / Royal Meteorological Society / National Science Foundation / National Oceanic and Atmospheric Administration / German Research Council / NOAA’s Hurricane Research Division / US Office / Naval Postgraduate School / French JR / University of Munich / Munich / /

Person

Ludwig Prandtl / Stull / Michael T. Montgomeryb / Frank Marks / Roger K. Smitha / /

Position

Director / steady-state hurricane model / time-dependent model for the hurricane / /

ProvinceOrState

New Foundland and Labrador / Florida / California / Michigan / /

PublishedMedium

Physics Today / /

Technology

thermodynamics / non-local mixing algorithm / condensation / ATM / /

SocialTag