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Turbulent air flow over sea waves; simplified model for applications
A simplified model of the air flow over surface water waves propagating at arbitrary phase veloci...
V.N. Kudryavtsev, V.K. Makin and J.F. Merink | Year: 1999 | Pages: 39
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First validation of GOME-2/MetOp absorbing aerosol height using EARLINET lidar observations
The aim of this study is to investigate the potential of the Global Ozone Monitoring Experiment-2...
K. Michailidis, M.-E. Koukouli, N. Siomos, D. Balis, O. Tuinder, L.G. Tilstra, L. Mona, G. Pappalardo, and D. Bortoli | Journal: Atmospheric Chemistry and Physics | Volume: 21 | Year: 2021 | doi: https://doi.org/10.5194/acp-21-3193-2021
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Variability in Labrador Sea Water formation
The Labrador Sea is located in the northwestern corner of the North Atlantic Ocean. Although smal...
R Gelderloos | University: Universiteit Utrecht | Year: 2012
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Interpolating wind speed from the sparse Dutch network to a higher resolution grid using local roughness from land use maps
There are different ways of creating gridded maps from observations. The aim of this study was to...
A Stepek, IL Wijnant, G Groen, P Hiemstra, R Sluiter | Conference: 13th International Conference on Wind Engineering | Place: Amsterdam | Year: 2011 | First page: 0 | Last page: 0
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Model inter-comparison on transport and chemistry – report on model inter-comparison performed within European Commission FP5 project EVERGREEN (Global satellite observation of greenhouse gas emissions)
A comprehensive inter-comparison of 5 atmospheric chemistry transport models (TM5, TM4, TM3, IMAG...
P Bergamaschi, JF Meirink, et al. | Year: 2006
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