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Aerodynamics / Vortices / Oceanography / Wind / Vortex / Drag / Turbulence / Tropical cyclone / Eye / Fluid dynamics / Meteorology / Fluid mechanics


Quarterly Journal of the Royal Meteorological Society Q. J. R. Meteorol. Soc. 140: 792–804, April 2014 Sensitivity of tropical-cyclone models to the surface drag coefficient in different boundary-layer schemes
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Document Date: 2014-09-22 02:57:29


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City

Monterey / Munich / Miami / /

Country

Germany / Jordan / /

/

Event

Natural Disaster / /

Facility

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

IndustryTerm

non-local mixing algorithm / mechanical energy / heat energy / steady solution / turbulent kinetic energy / Online Library / steady-state solution / /

NaturalFeature

Montgomery MT / /

Organization

the Pennsylvania State University / Hurricane Research Division / US Federal Government / Meteorological Institute / Royal Meteorological Society / Germany Department of Meteorology / National Oceanic and Atmospheric Administration / National Center / Naval Postgraduate School / University of Munich / carried out using the Pennsylvania State University / /

Person

Michael T. Montgomeryb / Gerald L. Thomsena / Roger K. Smitha / /

Position

axisymmetric model / /

PublishedMedium

Atmospheric Research / /

Region

Jordan’s Caribbean / /

Technology

radiation / thermodynamics / non-local mixing algorithm / /

SocialTag