Biblio
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Optimising assimilation of sea ice concentration in an Earth system model with a multicategory sea ice model. Tellus. Series A, Dynamic meteorology and oceanography 70:1435945, (2018).
Pacific contribution to decadal surface temperature trends in the Arctic during the twentieth century. Climate Dynamics 57, (2021). Abstract
Pacific contribution to the early twentieth-century warming in the Arctic. Nature Climate Change 8, (2018).
Poleward ocean heat transports, sea ice processes, and Arctic sea ice variability in NorESM1-M simulations. Journal of Geophysical Research (JGR): Biogeosciences 119, (2014).
Preceding winter Okhotsk Sea ice as a precursor to the following winter extreme precipitation in South China. Atmospheric Science Letters 23, (2022).
Precipitation Pattern of the mid-Holocene simulated by a high-resolution RCM. Advances in Atmospheric Sciences 31, (2014).
Quantification of the Arctic Sea Ice‐Driven Atmospheric Circulation Variability in Coordinated Large Ensemble Simulations. Geophysical Research Letters 47, (2020).
A reassessment of the dispersion properites of 99Tc in the North Sea and the Norwegian Sea. Journal of Marine Systems 68, 24-38 (2007). Download: Orre_JMS.pdf (1.93 MB)
Recent intensified impact of December Arctic Oscillation on subsequent January temperature in Eurasia and North Africa. Climate Dynamics (2018).doi:10.1007/s00382-018-4182-7
Reconstruction of northern hemisphere 500 hPa geopotential heights back to the late 19th century. Theor. Applied Climat. (2007).doi:10.1007/s00704-006-0271-3
On the reduced sensitivity of the Atlantic overturning to Greenland ice sheet melting in projections: a multi-model assessment. Climate Dynamics (2014).doi:10.1007/s00382-014-2270-x
The Relationship between Melt Season Sea Ice over the Bering Sea and Summer Precipitation over Mid-Latitude East Asia. Advances in Atmospheric Sciences 38, (2021).
The response of the East Asian summer monsoon to strong tropical volcanic eruptions. Advances in Atmospheric Sciences 31, (2014). Download: cui_etal_2014_the_response_of_the_east_asian_summer_monsoon_to_strong_tropical_volcanic_eruptions.pdf (1.86 MB)
The response of the North Pacific Decadal Variability to strong tropical volcanic eruptions. Climate Dynamics (2012).doi:10.1007/s00382-012-1373-5 Download: art%3A10.1007%2Fs00382-012-1373-5.pdf (2.42 MB)
The responses of East Asian Summer monsoon to the weakened North Atlantic Meridional Overturning Circulation in an enhanced freshwater input simulation. Chinese Science Bulletin 54, (2009). Abstract
Download: fulltext-19.pdf (960.28 KB)
Revisiting the Effect of Ocean Diapycnal Mixing on the Atlantic Meridional Overturning Circulation Recovery in a Freshwater Perturbation Simulation. Advances in Atmospheric Sciences 25, 597-609 (2008). Abstract
Download: fulltext-25.pdf (1.09 MB)
Role of natural external forcing factors in modulating the Indian summer monsoon rainfall, the winter North Atlantic Oscillation and their relationship on inter-decadal timescale. Climate Dynamics 43, (2014). Download: cui_etal_2014_role_of_natural_external_forcing_factors_in_modulating_the_indian_summer_monsoon_rainfall.pdf (1.25 MB)
The role of subpolar deep water formation and Nordic Seas overflows in simulated multidecadal variability of the Atlantic overturning. Ocean Science Discussions (2013).doi:10.5194/osd-10-1895-2013
Role of the atmospheric and oceanic circulation in the tropical Pacific SST changes. Journal of Climate 21, 2019-2034 (2008).
Sea-ice free Arctic contributes to the projected warming minimum in North Atlantic. Environmental Research Letters 12:074004, (2017).
The seasonal foot printing mechanism of spring Arctic sea ice in the Bergen climate models. Advances in Polar Science 25, (2014).
Seasonal predictions initialised by assimilating sea surface temperature observations with the EnKF. Climate Dynamics 19, (2019).