Biblio
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Økt CO2 gir forandring i sirkulasjonsmønsteret. Cicerone (RegClim) 30-32 (2002).
Zooming in on Arctic urban nature: green and blue space in Nadym, Siberia. Environmental Research Letters 16, (2021). Abstract
Younger Dryas cold spell and Holocenen- style circulation in the Nordic Seas. Proceedings Royal Dutch Academy of Sciences. Nat. Sci. 109-115 (1995).
World wide wind energy. EnviroTechnology 32-37 (2004).
WMO Global Annual to Decadal Climate Update A Prediction for 2021-25. Bulletin of The American Meteorological Society - (BAMS) 103, (2022).
Wind-Speed Undulations Over Swell: Field Experiment and Interpretation. Boundary-layer Meteorology (2010).doi:10.1007/s10546-010-9506-z Download: fulltext-33.pdf (1.49 MB)
Wind-induced cross-shelf flux of water masses and organic matter at the Gulf of Tehuantepec. Deep Sea Research Part I: Oceanographic Research Papers 221-246 (2008).
Wind stress and turbulence over ice in the Gulf of St. Lawrence. Journal of Geophysical Research 75, 2803-2812 (1970).
Wind Energy Mapping using Synthetic Aperture Radar (WEMSAR). CERSAT News special issue "Ocean Winds", Workshop on present and emerging remote sensing methods, Brest, France 19-21 June and in Advances in Wind Energy RTD - From FP4 towards FP5. 3-5 May, Contractor´s Meeting, National Technical Univ. of Athens (2000).
What happens with the Arcto-Norwegian cod if the thermohaline circulation slows down?. GLOBEC International Newsletter 11, (2005).
WEMSAR - wind energy mapping using synthetic aperture radar. Results from validation site 1 - the Norwegian west coast. EWEA Offshore Wind Energy Special Topic Conference, 10 - 12 December, Brussels, Belgium (2001).
WEMSAR - Wind Energy Mapping using Synthetic Aperture Radar. Proceedings of IGARSS01, Sydney (2001).
WEMSAR report no. 2 - Data access SAR wind energy retrieval validation. NERSC Technical report no. 208 to European Commission, DG 12, Brussels (2001).
WEMSAR final report, scientific results. NERSC Technical Report No. 237 (2003).
Weakening AMOC connects Equatorial Atlantic and Pacific interannual variability. Climate Dynamics (2013).doi:10.1007/s00382-013-1904-8 Abstract
Download: svendsen_etal_climdyn_2013_weakening_amoc_connects_equatorial_atlantic_and_pacific_interannual_variability.pdf (895.64 KB)
Wave–ice interactions in the marginal ice zone. Part 1: Theoretical foundations. Ocean Modelling 71, 81 - 91 (2013).
A waves-in-ice model with a floe-breaking parameterization. 27th Int. Workshop on Water Waves and Floating Bodies (2012).at <http://www.iwwwfb.org/Abstracts/iwwwfb27/iwwwfb27_53.pdf> Abstract
Wave-ice interactions in the marginal ice zone. Part 1: Theoretical foundations. Ocean Modelling 71, (2013).
Wave scattering at the sea-ice/ice-shelf transition with other applications. SIAM J. Appl. Math. 67, 938–959 (2007).