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CAS-ESM2.0 Successfully Reproduces Historical Atmospheric CO2 in a Coupled Carbon-Climate Simulation
The atmospheric carbon dioxide (CO 2 ) concentration has been increasing rapidly since the Industrial Revolution, which has led to unequivocal global...
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CAS-ESM2.0 Dataset for the Carbon Dioxide Removal Model Intercomparison Project (CDRMIP)
Understanding the response of the Earth system to varying concentrations of carbon dioxide (CO 2 ) is critical for projecting possible future climate...
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CAS-ESM2.0 Model Datasets for the CMIP6 Flux-Anomaly-Forced Model Intercomparison Project (FAFMIP)
The second version of the Chinese Academy of Sciences Earth System Model (CAS-ESM2.0) is participating in the Flux-Anomaly-Forced Model...
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CAS-ESM2.0 Model Datasets for the CMIP6 Ocean Model Intercomparison Project Phase 1 (OMIP1)
As a member of the Chinese modeling groups, the coupled ocean-ice component of the Chinese Academy of Sciences’ Earth System Model, version 2.0...
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Evaluation of spatial–temporal features and circulation patterns of Northeast China cold vortex in CMIP6 AMIP simulations
Northeast China Cold Vortex (NCCV), known as cut-off low, frequently occurs and induces low temperatures, rainstorms, and even catastrophic regional...
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Ocean Response to a Climate Change Heat-Flux Perturbation in an Ocean Model and Its Corresponding Coupled Model
State-of-the-art coupled general circulation models (CGCMs) are used to predict ocean heat uptake (OHU) and sea-level change under global warming....
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China’s EarthLab—Forefront of Earth System Simulation Research
This article introduces “EarthLab”, a major new Earth system numerical simulation facility developed in China. EarthLab is a numerical simulation...
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Simulation of China’s potential rice yields by coupling land system evolution and climate change
Land systems and climate, which are the key elements of agricultural production and key drivers of crop yields, affect the quality of arable land....
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Evaluation of Arctic Sea Ice Drift and its Relationship with Near-surface Wind and Ocean Current in Nine CMIP6 Models from China
The simulated Arctic sea ice drift and its relationship with the near-surface wind and surface ocean current during 1979–2014 in nine models from...
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Multi-decadal variation of ENSO forecast skill since the late 1800s
Diagnosing El Niño-Southern Oscillation (ENSO) predictability within operational forecast models is hindered by computational expense and the need...
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Evaluating the Ozone Valley over the Tibetan Plateau in CMIP6 Models
Total column ozone (TCO) over the Tibetan Plateau (TP) is lower than that over other regions at the same latitude, particularly in summer. This...
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Evaluation of historical CMIP6 model simulations and future projections of temperature and precipitation in Paraguay
This study evaluates the ability of 19 models of CMIP phase 6 (CMIP6) to simulate Paraguay’s climate features. Historical multi-member simulations of...
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Long-term Regional Dynamic Sea Level Changes from CMIP6 Projections
Anthropogenic climate forcing will cause the global mean sea level to rise over the 21st century. However, regional sea level is expected to vary...
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Present-Day PM2.5 over Asia: Simulation and Uncertainty in CMIP6 ESMs
This study assesses the ability of 10 Earth System Models (ESMs) that participated in the Coupled Model Inter-comparison Project Phase 6 (CMIP6) to...
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Development of Climate and Earth System Models in China: Past Achievements and New CMIP6 Results
The Earth-Climate System Model (ECSM) is an important platform for multi-disciplinary and multi-sphere integration research, and its development is...