Biblio
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Operational Forecasting of Sea Ice in the Arctic Using TOPAZ system. Sea Ice in the Arctic, Past, Present and Future (2020).doi:10.1007/978-3-030-21301-5_9
Operational Global Ocean Prediction Systems. GODAE Symposium, Biarritz, France 13-15 June 2002 (2002).
Operational monitoring of coastal and marine environment with spaceborne SAR systems: Where are we now and where are we going. Proceedings of the second workshop on coastal and marine applications of SAR, 8-12 september 2003, Svalbard, Norway, ESA SP-565 3-15 (2004).
Operational ocean observations from space. Report of the EuroGOOS/Eumetsat conference on operational ocean observations from space, Darmstadt, Germany, 5-6 October 2000 (2000).
Operational Ocean Observations from Space. EuroGOOS Publication No. 16 (2001).
Operational oceanography challenges and potential. The Norwegian Coastal Current oceanography and climate. Chapter 11 (2007).
Operational Sea Ice Monitoring in Support of Navigation and Off-shore Operations in the Northern Sea Route. Proceedings for the 27th International Symposium on Remote Sensing of Environment Information for Sustainabilty Tromsø, Norway, organized by International Symposia on Remote Sensing of Environment (ISRSE) and the Norwegian Space Centre 28-32 (1998).
Operational use of Wind Data for Slick Detection. In proceedings of Third ERS Symposium on Space at the Service of Our Environment, Florence, Italy, 14-21 March, ESA SP-414 3, 1417-1422 (1997).
Operational Use of Wind Data for Slick Detection and Verification in the ERS SAR Images. NERSC Special Report no. 47. Final Report to Tromsø Satellite Station (1997).
Operator s Manual for Slick Analysis. NERSC Special Report no. 37 (1996).
Operators Manual for Slick Analysis in SAR images. NERSC Special report (2005).
Opptil en meter havstigning langs Norskekysten innen år 2100. Cicerone 29-31 (2007).
Optical monitoring of phytoplankton bloom pigment signatures. Phytoplankton Pigments: Characterization, Chemotaxonomy and Applications in Oceanography 784 (2011).at <http://www.cambridge.org/aus/catalogue/catalogue.asp?isbn=9781107000667>
Optical remote sensing of shallow-water environmental parameters: a feasibility study. Remote Sensing of Environment 73, 512-521 (2000).
Optimal evaluation of the surface ocean CO2 system in the northern North Atlantic using data from voluntary observing ships. Limnology and oceanography: methods 9, 109-118 (2009).
Optimising assimilation of hydrographic profiles into isopycnal ocean models with ensemble data assimilation. Ocean Modelling 114, (2017).
Optimising assimilation of sea ice concentration in an Earth system model with a multicategory sea ice model. Tellus A: Dynamic Meteorology and Oceanography 70:1435945, (2018).
Optimization of coastal zone airborne monitoring through thermohydrodynamic modelling and interpolation techniques. Proceedings for the 27th International Symposium on Remote Sensing of Environment Information for Sustainabilty Tromsø, Norway, organized by International Symposia on Remote Sensing of Environment (ISRSE) and the Norwegian Space Centre (1998).
Optimized Tropical Cyclone Winds From QuikSCAT: A Neural Network Approach. IEEE Transactions on Geoscience and Remote Sensing (2014).doi:10.1109/TGRS.2014.2312333
Orgelpiper måler havtemperaturen i Arktis. Teknisk Ukeblad 158, 75 (2011). Download: Orgelpiper måler havtemperaturen i Arktis.pdf (1.43 MB)
Origin of the Y. Dryas event: A pause between ice collapse and meltwater heat pumping. Proceedings Roal Dutch Academy of Sciences., Nat. Sci. 61-105 (1995).