Biblio
Filters: Author is Roshin Pappukutty Raj [Clear All Filters]
Assimilation of sea surface salinities from SMOS in an Arctic coupled ocean and sea ice reanalysis. Ocean Science 19, (2023).
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
The coherence of the oceanic heat transport through the Nordic seas: oceanic heat budget and interannual variability. Ocean Science Discussions (OSD) (2020).doi:10.5194/os-2020-109
Surface and Interior Dynamics of Arctic Seas Using Surface Quasi-Geostrophic Approach. Remote Sensing 15, (2023).
Quasi-Permanent Mushroom-like Dipole in the Lofoten Basin. Pure and Applied Geophysics (PAGEOPH) (2021).doi:10.1007/s00024-021-02922-9
Copernicus Marine Service Ocean State Report. Journal of Operational Oceanography 11449919159641589185942437116401621, S1 - S142 (2018).
Copernicus Marine Service Ocean State Report, Issue 5. Journal of operational oceanography. Publisher: The Institute of Marine Engineering, Science & Technology 14, (2021).
Ocean heat content, In: Copernicus Marine Service Ocean State Report. Journal of operational oceanography. Publisher: The Institute of Marine Engineering, Science & Technology 11, (2018).
The Copernicus Marine Environment Monitoring Service Ocean State Report. Journal of operational oceanography. Publisher: The Institute of Marine Engineering, Science & Technology 9, (2016).
Where and How the East Madagascar Current Retroflection Originates?. Journal of Geophysical Research (JGR): Oceans 126, (2021). Abstract
Quantifying mesoscale eddies in the Lofoten Basin. Journal of Geophysical Research (JGR): Oceans 121, (2016).
Quantifying Atlantic Water transport to the Nordic Seas by remote sensing. Remote Sensing of Environment 216, (2018).
General circulation of the Norwegian Sea with a deeper look into the Lofoten Basin from space. Oceans from Space 197-198 (2010).
The Lofoten Vortex of the Nordic Seas. Deep Sea Research Part I: Oceanographic Research Papers 96, (2015).
Oceanic and atmospheric influences on the variability of phytoplankton bloom in the Southwestern Indian Ocean. Journal of Marine Systems 82, (2010).
Interaction between mesoscale eddies and the gyre circulation in the Lofoten basin. Journal of Geophysical Research (JGR): Oceans 125.e2020JC016102, (2020).
Mesoscale ocean eddy dataset in the Lofoten Basin from Satellite Altimetry. Journal of Geophysical Research - Oceans 121, (2016).
Surface velocity estimates of the North Indian Ocean from satellite gravity and altimeter missions. International Journal of Remote Sensing 38, (2017).
Monitoring the mesoscale eddies of the Lofoten Basin: importance, progress, and challenges. International Journal of Remote Sensing 37, (2016).