Advances in Atmospheric Sciences
- China’s EarthLab—Forefront of Earth System Simulation Research
- All-sky Data Assimilation of MWTS-2 and MWHS-2 in the Met Office Global NWP System.
- An Objective Identification Method for Wintertime Cold Fronts in Eurasia
- Dominant Modes of Interannual Variability in Atmospheric Water Vapor Content over East Asia during Winter and Their Associated Mechanisms
- The Role of Ocean Dynamics in the Cross-equatorial Energy Transport under a Thermal Forcing in the Southern Ocean
- A Logistic-growth-equation-based Intensity Prediction Scheme for Western North Pacific Tropical Cyclones※
- The Simulation of Five Tropical Cyclones by Sample Optimization of Ensemble Forecasting Based on the Observed Track and Intensity
- Electronic Supplementary Material to:Dominant Modes of Interannual Variability in Atmospheric Water Vapor Content over East Asia during Winter and Their Associated Mechanisms*
- On the Importance of High-Resolution in Large-Scale Ocean Models
- Controls on the Northward Movement of the ITCZ over the South China Sea in Autumn:A Heavy Rain Case Study
- Changes of Extreme Precipitation and its Associated Mechanisms in Northwest China
- Detecting Regional Deep Ocean Warming below 2000 Meter Based on Altimetry,GRACE,Argo,and CTD Data
- A Potential Risk Index Dataset for Landfalling Tropical Cyclones over the Chinese Mainland (PRITC dataset V1.0)
- Record Arctic Ozone Loss in Spring 2020 is Likely Caused by North Pacific Warm Sea Surface Temperature Anomalies
- Projected Increase in Probability of East Asian Heavy Rainy Summer in the 21st Century by CMIP5 Models