Decadal Climate Variability in a Changing Earth System: Insights from Air-Sea Interaction, Mechanisms and Predictability
Decadal Climate Variability in a Changing Earth System: Insights from Air-Sea Interaction, Mechanisms and Predictability
Session ID#: 279637
Session Description:
Decadal climate variability, a key regulator of the global climate system, arises from complex interactions across the Earth system. Understanding its mechanisms is vital for mitigating climate risks and developing adaptation strategies. However, progress in decadal climate change remains constrained by gaps in theory, observations, and modeling capabilities. This session highlights cutting-edge research that advances our understanding of decadal climate variability, with a particular focus on air-sea interaction, dynamical mechanisms, and predictability. We call for submissions that address atmosphere-ocean dynamics, air-sea-land-ice interactions, inter-basin interactions and their impacts, as well as decadal predictability, numerical simulations, and prediction. Contributions from multidisciplinary perspectives on decadal climate change are also strongly encouraged.
Co-Sponsor(s):
- GC - Global Environmental Change
- OS - Ocean Sciences
Index Terms:
1622 Earth system modeling [GLOBAL CHANGE]
3305 Climate change and variability [ATMOSPHERIC PROCESSES]
3339 Ocean/atmosphere interactions [ATMOSPHERIC PROCESSES]
4513 Decadal ocean variability [OCEANOGRAPHY: PHYSICAL]
Primary Convener: Jianping Li, Ocean University of China, Frontiers Science Center for Deep Ocean Multi-spheres and Earth System (DOMES)/Key Laboratory of Physical Oceanography/Academy of Future Ocean/College of Oceanic and Atmospheric Sciences/Center for Ocean Carbon Neutrality, Qingdao, China
Conveners: Luo Dehai, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing, China, Feili Li, Xiamen University, Xiamen, China and Qingquan Li, China Meteorological Administration, National Climate Center, Beijing, China
Student/Early Career Convener: Xin Qi, Aerospace Information Technology University, School of Remote Sensing Science and Technology, Jinan, China
See more of: Atmospheric Sciences