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Impact of dominant waves on sea drag
The impact of air-flow separation from breaking dominant waves is analyzed.
This impact results f...
VK Makin, VK Kudryavtsev | Status: published | Journal: Bound.-Layer Meteorol. | Volume: 103 | Year: 2002 | First page: 83 | Last page: 99
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Derivation of a 10-year radar-based climatology of rainfall
Weather radars give quantitative precipitation estimates (QPE) over large areas with high spatial...
A Overeem, I Holleman, TA Buishand | Status: published | Journal: J. Appl. Meteor. | Volume: 48 | Year: 2009 | First page: 1448 | Last page: 1463 | doi: 10.1175/2009JAMC1954.1
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Composite hodographs and inertial oscillations in the nocturnal boundary layer.
In this work the dynamic behaviour of the wind in the nocturnal boundary layer is studied, with a...
P Baas, BJH van de Wiel, L van den Brink, AAM Holtslag | Status: accepted | Journal: Quart. J. Royal Meteor. Soc. | Year: 2011 | doi: DOI:10.1002/qj.941
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Stability of multi-layer ocean vortices: a parameter study including realistic Gulf Stream and Agulhas Rings
Ocean rings, when isolated from major ocean currents, can have life spans on the order of years. ...
CA Katsman, PCF van der Vaart, HA Dijkstra, WPM de Ruijter | Status: published | Journal: J. Phys. Oceanogr. | Volume: 33 | Year: 2003 | First page: 1197 | Last page: 1218
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NRLMSIS 2.0: A whole‐atmosphere empirical model of temperature and neutral species densities
NRLMSIS® 2.0 is an empirical atmospheric model that extends from the ground to the exobase and de...
JT Emmert, E Doornbos | Status: published | Journal: J. Geophys. Res. | Year: 2020 | doi: 10.1029/2020EA001321
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