Area of research
Atmospheric Science · Global and Planetary Change
Research interest
Research interests include Climate variability and models, Meteorological Phenomena and Simulations, Tropical and Extratropical Cyclones Research, and Ocean Waves and Remote Sensing.
The Green’s Function Model Intercomparison Project (GFMIP) Protocol
The Dependence of Climate Sensitivity on the Meridional Distribution of Radiative Forcing
The Influence of Large-Scale Radiation Anomalies on Tropical Cyclone Frequency
A Review of El Niño Southern Oscillation Linkage to Strong Volcanic Eruptions and Post-Volcanic Winter Warming
An Evaluation of Tropical Cyclone Rainfall Structures in the HighResMIP Simulations against Satellite Observations
Clouds and Convective Self‐Aggregation in a Multimodel Ensemble of Radiative‐Convective Equilibrium Simulations
Drivers for the poor air quality conditions in North China Plain during the COVID-19 outbreak
Characteristics of Model Tropical Cyclone Climatology and the Large-Scale Environment
Retrieving the global distribution of the threshold of wind erosion from satellite data and implementing it into the Geophysical Fluid Dynamics Laboratory land–atmosphere model (GFDL AM4.0/LM4.0)
Response of Storm-Related Extreme Sea Level along the U.S. Atlantic Coast to Combined Weather and Climate Forcing
A New Method to Construct a Horizontal Resolution‐Dependent Wind Speed Adjustment Factor for Tropical Cyclones in Global Climate Model Simulations
Process-Oriented Evaluation of Climate and Weather Forecasting Models
Moist Static Energy Budget Analysis of Tropical Cyclone Intensification in High-Resolution Climate Models
Azimuthally Averaged Wind and Thermodynamic Structures of Tropical Cyclones in Global Climate Models and Their Sensitivity to Horizontal Resolution
Western North Pacific Tropical Cyclone Model Tracks in Present and Future Climates
A Moist Static Energy Budget–Based Analysis of the Sahel Rainfall Response to Uniform Oceanic Warming
Process-Oriented Diagnosis of Tropical Cyclones in High-Resolution GCMs
Surface temperature dependence of tropical cyclone‐permitting simulations in a spherical model with uniform thermal forcing
An Assessment of Multimodel Simulations for the Variability of Western North Pacific Tropical Cyclones and Its Association with ENSO
The influence of model resolution on the simulated sensitivity of North Atlantic tropical cyclone maximum intensity to sea surface temperature
The 3–4-Week MJO Prediction Skill in a GFDL Coupled Model
Hurricanes and Climate: The U.S. CLIVAR Working Group on Hurricanes
Characteristics of tropical cyclones in high‐resolution models in the present climate
Beyond Weather Time-Scale Prediction for Hurricane Sandy and Super Typhoon Haiyan in a Global Climate Model
Forced and Internal Variability of Tropical Cyclone Track Density in the Western North Pacific*
Cluster Analysis of Downscaled and Explicitly Simulated North Atlantic Tropical Cyclone Tracks
How Well Do Global Climate Models Simulate the Variability of Atlantic Tropical Cyclones Associated with ENSO?
North American Climate in CMIP5 Experiments: Part III: Assessment of Twenty-First-Century Projections*
North American Climate in CMIP5 Experiments. Part II: Evaluation of Historical Simulations of Intraseasonal to Decadal Variability
The Aqua-Planet Experiment (APE): CONTROL SST Simulation
SCC-PG: Getting the Edge on Data-Driven Self-Managed Care: A Focus on Older Veterans in Arizona
IUCRC Phase II Arizona State University: Center for Accelerated Real Time Analytics (CARTA)
CC* Integration-Large: (BLUE) Software-Defined CyberInfrastructure to enable data-driven smart campus applications
CNS Core: Medium: Collaborative Research: Generalized Caching-As-A-Service
II-NEW: GEARS - An Infrastructure for Energy-Efficient Big Data Research on Heterogeneous and Dynamic Data
CSR: Medium: Collaborative Research: NVM-enabled Host-side Caches
CAREER: Coordinated QoS-Driven Management of Cloud Computing and Storage Resources
Student Travel Support for ACM HPDC 2015
CAREER: Coordinated QoS-Driven Management of Cloud Computing and Storage Resources
HECURA: Collaborative Research: QoS-driven Storage Management for High-end Computing Systems