Biblio
Filtre: Forfatter er Yongqi Gao [Slett Alle Filtre]
Forcing and impact of the Northern Hemisphere continental snow cover in 1979–2014. The Cryosphere (2023).doi:10.5194/tc-17-2157-2023
Arctic Troposphere Warming Driven by External Radiative Forcing and Modulated by the Pacific and Atlantic. Journal of Geophysical Research (JGR): Atmospheres 127, (2022). Abstract
Simulated contribution of the interdecadal Pacific oscillation to the west Eurasia cooling in 1998-2013. Environmental Research Letters 17, (2022). Abstract
Contributors to linkage between Arctic warming and East Asian winter climate. Climate Dynamics 57, (2021). Abstract
Impact of global sea surface temperature on the recent early winter Arctic tropospheric warming in coordinated large ensemble simulations 协调大集合模拟下全球海表面温度对北极对流层早冬增暖的影响. Atmospheric and Oceanic Science Letters 14, (2021).
Impacts of North Atlantic sea surface temperature on the predominant modes of spring precipitation monthly evolution over Northeast China. Climate Dynamics (2021).doi:10.1007/s00382-021-05966-8
Influences of North Pacific anomalies on Indian summer monsoon onset. Quarterly Journal of the Royal Meteorological Society 147, (2021).
Multi-source and temporal attention network for probabilistic wind power prediction. IEEE Transactions on Sustainable Energy 12, (2021).
Pacific contribution to decadal surface temperature trends in the Arctic during the twentieth century. Climate Dynamics 57, (2021). Abstract
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 unstable connection between Atlantic Multidecadal Oscillation and Indian Summer Monsoon in CESM-LE. Climate Dynamics (2021).doi:10.1007/s00382-021-05976-6
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
Arctic sea-ice loss intensifies aerosol transport to the Tibetan Plateau. Nature Climate Change 10, (2020).
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
Projected near-term changes of temperature extremes in Europe and China under different aerosol emissions. Environmental Research Letters 15:03401, (2020).
Quantification of the Arctic Sea Ice‐Driven Atmospheric Circulation Variability in Coordinated Large Ensemble Simulations. Geophysical Research Letters 47, (2020).
Seasonal to decadal predictions of regional Arctic sea ice by assimilating sea surface temperature in the Norwegian Climate Prediction Model. Climate Dynamics (2020).doi:10.1007/s00382-020-05196-4
Seasonal predictions initialised by assimilating sea surface temperature observations with the EnKF. Climate Dynamics 19, (2019).
Atlantic multidecadal oscillation modulates the impacts of Arctic sea ice decline. Geophysical Research Letters 45, (2018).
The connection between the Atlantic Multidecadal Oscillation and the Indian Summer Monsoon since the Industrial Revolution is intrinsic to the climate system. Environmental Research Letters 13:094020, (2018).
Downscaling satellite-derived daily precipitation products with an integrated framework. International Journal of Climatology (2018).doi:10.1002/joc.5879