Biblio
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Arctic sea ice transformation revealed from satellite passive microwave data. Problemy Arktiki i Antarktiki (Problems of the Arctic and Antarctic) 78, 38-47 (2008).
Arctic Troposphere Warming Driven by External Radiative Forcing and Modulated by the Pacific and Atlantic. Journal of Geophysical Research (JGR): Atmospheres 127, (2022). Abstract
An assessment of ten ocean reanalyses in the polar regions. Climate Dynamics (2018).doi:10.1007/s00382-018-4242-z
Assimilating altimetry data into a HYCOM model of the Pacific: Ensemble Optimal Interpolation versus Ensemble Kalman Filter. Journal of Atmospheric and Oceanic Technology 27, 753-765 (2010). Abstract
Download: wan10.pdf (3.84 MB)
Assimilating In Situ and Remote Sensing Observations in a Highly Variable Estuary–Shelf Model. Journal of Atmospheric and Oceanic Technology 38, (2021).
Assimilating the along-track sea level anomaly into the regional ocean modeling system using the ensemble optimal interpolation. Acta Oceanologica Sinica 33, (2014).
The Assimilation of Temperature and Salinity Profile Observations for Forecasting the River–Estuary–Shelf Waters. Journal of Geophysical Research (JGR): Oceans 126, (2021).
Atmospheric boundary layer over steep surface waves. Ocean Dynamics 64, (2014). Download: troitskaya_2014_atmospheric_boundary_layer_over_steep_surface_waves.pdf (2.67 MB)
Atmospheric boundary layers in storms: advanced theory and modelling applications. Advances in Geosciences 47-49 (2005).
Atmospheric heat advection in the Kara Sea region under main synoptic processes. International Journal of Climatology 39, (2018).
Atmospheric Water Vapor and Cloud Liquid Water Retrieval Over the Arctic Ocean Using Satellite Passive Microwave Sensing. IEEE Transactions on Geoscience and Remote Sensing 48, 283 - 294 (2010).
Biomass changes and trophic amplification of plankton in a warmer ocean. Global Change Biology 20, (2014).
Calculation of the height of stable boundary layers in practical applications. Boundary-layer Meteorology 389-409 (2002).at <http://www.springerlink.com/content/100245/?p=43e84a3972f3443fbe3e13aeb2578da0&pi=0>
Climate Impacts of the Decadal and Interannual Variability of the Atlantic Thermohaline Circulation in Bergen Climate Model. Chinese Journal of Atmospheric Sciences (2005).
Closure schemes for stably stratified atmospheric flows without turbulence cutoff. Journal of the Atmospheric Sciences 73, (2016).
A Comparison of Factors That Led to the Extreme Sea Ice Minima in the Twenty-First Century in the Arctic Ocean. Journal of Climate 35, (2022).
Comparison of sea ice signatures in OKEAN and RADARSAT radar images for the northeastern Barents Sea. Canadian Journal of Remote Sensing 30, 882-892 (2004).
Constraining CMIP6 Projections of an Ice-Free Arctic Using a Weighting Scheme. Earth's Future 10, (2022).
Contributors to linkage between Arctic warming and East Asian winter climate. Climate Dynamics 57, (2021). Abstract
Copernicus Marine Service Ocean State Report. Journal of Operational Oceanography 11449919159641589185942437116401621, S1 - S142 (2018).
Copernicus Marine Service Ocean State Report, Issue 3. Journal of operational oceanography. Publisher: The Institute of Marine Engineering, Science & Technology 12, (2019).
Coupled stratosphere-troposphere-Atlantic multidecadal oscillation and its importance for near-future climate projection. npj Climate and Atmospheric Science 5, (2022).