Biblio
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Simulating the mass balance and salinity of Arctic and Antarctic sea ice. 1. Model description and validation. Ocean Modelling 27, 33 - 53 (2009).
Simulating the effects of the 1991 Mount Pinatubo volcanic eruption using the ARPEGE atmosphere general circulation model. Advances in Atmospheric Sciences 25, 213-226 (2008). Abstract
Simulated variability of the Atlantic meridional overturning circulation. Climate Dynamics 22, 701-720 (2004). Abstract
Simulated spatiotemporal response of ocean heat transport to freshwater enhancement in North Atlantic and associated mechanisms. Acta Meteorologica Sinica 25, 364 - 375 (2011).
Simulated primary production in the Norwegian Sea - Interannual variability and impact of mesoscale activity. Doctoral Thesis No. 77 (2008).
Simulated pre-industrial climate in Bergen Climate Model (version 2): model description and large-scale circulation features. Geoscientific Model Development (2009).
Simulated North Atlantic -Nordic Seas water mass exchanges in an isopycnic coordinate OGCM. Geophysical Research Letters 30, 1536-1539 (2003). Abstract
Simulated mass, heat and freshwater budgets of the Arctic Mediterranean. Master Thesis No. 78 (2004).
Simulated Atlantic Meridional Overturning Circulation in the 20th century with an ocean model forced by reanalysis-based atmospheric data sets. Ocean Modelling 100, 31 - 48 (2016).
A simplified quasilinear model for wave generation and air-sea momentum flux. Journal of Physical Oceanography 23, (1993).
Similarity theory and parameterization of the stably stratified atmospheric boundary layers. 18th AMS Symposium on Boundary Layers and Turbulence, 9-13 June 2008, Stockholm, Sweden. Abstract: http://www.ametsoc.org/MEET/fainst/200818BLT.html (2008).
Similarity theory and calculation of turbulent fluxes at the surface for the stably stratified atmospheric boundary layers. 7th Annual EMS Meeting, 1-5 October, San Lorenzo de El Escorial, Spain, EMS7/ECAM8 Abstracts, 4 (2007).
Similarity theory and calculation of turbulent fluxes at the surface for the stably stratified atmospheric boundary layer. Atmospheric Boundary Layers: Nature, Theory and Applications to Environmental Modelling and Security 37-49 (2007).at <http://www.springerlink.com.pva.uib.no/content/978-0-387-74318-9/#section=167162&page=3&locus=29> Abstract
Similarity theory and calculation of turbulent fluxes at the surface for the stably stratified atmospheric boundary layer. Boundary-Layer Meteorology 125, 193-205 (2007). Abstract
Similarity theory and calculation of the surface turbulent fluxes in stably-stratified atmospheric boundary layers. (2012).doi:10.1007/978-0-387-74321-9_4
Signatures of global warming and regional climate shift in the Arabian Sea. Climate change and aquatic ecosystems 55-62 (2010).at <http://drs.nio.org/drs/handle/2264/3564> Abstract
Signature of the Agulhas Current in high resolution satellite derived wind fields. Remote Sensing of Environment 217, (2018).
A sight on air pollution in industrial districts (invited lecture). International Meeting: Biferno Valley: Atmosphere and Fluvial Environment (Regione Molise / ENEA), Termoli, Italy, 7.10.2008. Abstract: the Meeting proceedings (2008).
Siberian permafrost and seasonally frozen grounds: parameters retrieval using microwave satellite data. Earth observation and remote sensing 3-9 (2005).
Shtokman report: Review of ice. (2009).
Shrinking sea ice could benefit arctic exploration. Offshore 56-58 (2007).
Shrinking of the arctic ice cover over the last decades. Proceedings of the International Radiation Symposium, St.Petersburg, Russia, 24-26 July 2000. (2000).