Biblio
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Radioactivity and pollution in the Nordic Seas and Arctic region: Observations, Modelling and Simulations. Nansen Center´s Polar Series 5, 408 (2010).
The ARCPATH Project: Assessing Risky Environments and Rapid Change: Research on Climate, Adaptation and Coastal Communities in the North Atlantic Arctic. Nordic Perspectives on the Responsible Development of the Arctic: Pathways to Action (2020).doi:10.1007/978-3-030-52324-4_7
The Climate Model: An ARCPATH Tool to Understand and Predict Climate Change. Nordic Perspectives on the Responsible Development of the Arctic: Pathways to Action (2020).doi:10.1007/978-3-030-52324-4_8
Ocean general circulation modelling of the Nordic Seas. The Nordic Seas: An Integrated perspective 158, 199-220 (2005).
Intercomparison of dynamic height in the Nordic Seas from observations and climate model simulations for the period 1950 to 2000. Proceedings of the second international GOCE user workshop: GOCE, the geoid and oceanography (2004).
On the recent time history and forcing of the inflow of Atlantic Water to the Arctic Mediterranean. (2004). Download: nilsen_ACIA2004.pdf (860.29 KB)
Simulation scenarious for potential radioactive spreading in the 21st century from rivers and external sources in the Russian arctic coastal zone - RADARC. Proceedings from the 5th international conference on environmental radioactivity in the arctic and antarctic. St.Petersburg, Russia, 16-20 June 2002 (2002).
Air - sea coupled model simulation of North Atlantic interannual variability I: Local air - sea interaction. Acta Meteorologica Sinica (Chinese journal with English abstract) 64, 1-17 (2006).
Anthropogenic agent implicated as a prime driver of shift in precipitation in eastern China in the late 1970s. Atmospheric Chemistry and Physics (ACP) 13, (2013).
Anthropogenic Forcing Agents and the “Southern Flood and Northern Drought” in Eastern China. Atmospheric Chemistry and Physics Discussions (ACPD) 13, (2013).
Arctic sea ice and Eurasian climate: A review. Advances in Atmospheric Sciences 32, (2014). Download: gao_etal_2015_arctic_sea_ice_and_eurasian_climate_a_review.pdf (4.59 MB)
Arctic sea ice decline and ice export in the CMIP5 historical simulations. Ocean Modelling 71, (2013). Download: langehaug_etal_2013_arctic_sea_ice_decline_and_ice_export_in_the_cmip5_historical_simulations.pdf (1.24 MB)
Arctic sea-ice loss intensifies aerosol transport to the Tibetan Plateau. Nature Climate Change 10, (2020).
Arctic Troposphere Warming Driven by External Radiative Forcing and Modulated by the Pacific and Atlantic. Journal of Geophysical Research (JGR): Atmospheres 127, (2022). Abstract
Asian droughts in the last millennium: a search for robust impacts of Pacific Ocean surface temperature variabilities. Climate Dynamics Published ahead of print, (2017). Abstract
Association of Indian Ocean ITCZ Variations with the Arctic Oscillation during Boreal Winter. Atmospheric and Oceanic Science Letters 6, (2013). Download: gong_etal_2013_association_of_indian_ocean_itcz_variations_with_the_arctic_oscillation_during_boreal_winter.pdf (3.08 MB)
The Atlantic multidecadal oscillation: its manifestations and impacts with special emphasis on the Atlantic region north of 60°N. Journal of Marine Systems 133, (2013).
The Atlantic multidecadal oscillation: its manifestations and impacts with special emphasis on the Atlantic region north of 60°N. Journal of Marine Systems 133, (2014).
Atlantic multidecadal oscillation modulates the impacts of Arctic sea ice decline. Geophysical Research Letters 45, (2018).
Atmospheric response to the autumn sea-ice free Arctic and its detectability. Climate Dynamics (2015).doi:10.1007/s00382-015-2689-8 Download: suo_etal_2016_atmospheric_response_to_the_autumn_sea-ice_free_arctic_and_its_detectability.pdf (3.79 MB)
Boreal winter Arctic Oscillation as an indicator of summer SST anomalies over the western tropical Indian Ocean. Climate Dynamics (2016).doi:10.1007/s00382-016-3216-2
The change in sea ice cover is responsible for non-uniform variation in winter temperature over East Asia. Atmospheric and Oceanic Science Letters 8, (2015).
Climate Change and Silk Road Civilization Evolution in Arid Central Asia: Progress and Issues. Advances in Earth Science 34, (2019).
Climatic response to changes in vegetation in the Northwest Hetao Plain as simulated by the WRF model. International Journal of Climatology 33, (2012).