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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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Intense coastal rainfall in the Netherlands in response to high sea surface temperatures: analysis of the event of August 2006 from the perspective of a changing climate.
August 2006 was an exceptionally wet month in the Netherlands, in particular near the coast where...
G Lenderink, E van Meijgaard, F Selten | Status: published | Journal: Clim. Dyn. | Volume: 32 | Year: 2009 | First page: 19 | Last page: 33 | doi: 10.1007/s00382-008-0366-x
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A mechanism of decadal variability of the sea-ice volume in the Northern Hemisphere
A long-term simulation performed with a coarse-resolution, global, atmosphere-ocean-sea-ice model...
H Goosse, FM Selten, RJ Haarsma, JD Opsteegh | Status: published | Journal: Clim. Dyn. | Volume: 19 | Year: 2002 | First page: 61 | Last page: 83 | doi: 10.1007/s00382-001-0209-5
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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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An intercomparison of tropospheric ozone reanalysis products from CAMS, CAMS interim, TCR-1, and TCR-2
Global tropospheric ozone reanalyses constructed using different state-of-the-art satellite data ...
V Huijnen, K Miyazaki, J Flemming, A Inness, T Sekiya, MG Schultz | Status: published | Journal: Geoscientific Model Development | Year: 2020 | First page: 1513 | Last page: 1544 | doi: https://doi.org/10.5194/gmd-13-1513-2020
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