Area of research
Atmospheric Science · Oceanography
Research interest
Research interests include Tropical and Extratropical Cyclones Research, Meteorological Phenomena and Simulations, Climate variability and models, and Ocean Waves and Remote Sensing.
Surface ocean warming near the core of hurricane Sam and its representation in forecast models
Hurricane Observations by Uncrewed Systems
Towards integrated modeling of the long-term impacts of oil spills
Uncertainty Propagation in Coupled Atmosphere–Wave–Ocean Prediction System: A Study of Hurricane Earl (2010)
Large‐scale precipitation tracking and the MJO over the Maritime Continent and Indo‐Pacific warm pool
Hurricane‐induced ocean waves and stokes drift and their impacts on surface transport and dispersion in the Gulf of Mexico
Predictability and Dynamics of Tropical Cyclone Rapid Intensification Deduced from High-Resolution Stochastic Ensembles
Ocean surface waves in Hurricane Ike (2008) and Superstorm Sandy (2012): Coupled model predictions and observations
Predictability of tropical cyclone intensity: scale‐dependent forecast error growth in high‐resolution stochastic kinetic‐energy backscatter ensembles
Aircraft Observations of Dry Air, the ITCZ, Convective Cloud Systems, and Cold Pools in MJO during DYNAMO
Tracking the <scp><i>H</i></scp><i>ercules 265</i> marine gas well blowout in the <scp>G</scp>ulf of <scp>M</scp>exico
Impact of storm‐induced cooling of sea surface temperature on large turbulent eddies and vertical turbulent transport in the atmospheric boundary layer of <scp>H</scp>urricane <scp>I</scp>saac
Subsidence Warming as an Underappreciated Ingredient in Tropical Cyclogenesis. Part I: Aircraft Observations
Submesoscale dispersion in the vicinity of the <i>Deepwater Horizon</i> spill
Stable Boundary Layer and Its Impact on Tropical Cyclone Structure in a Coupled Atmosphere–Ocean Model
Data assimilation considerations for improved ocean predictability during the Gulf of Mexico Grand Lagrangian Deployment (GLAD)
An explosive convective cloud system and its environmental conditions in MJO initiation observed during DYNAMO
Research Overview of the Consortium for Advanced Research on Transport of Hydrocarbon in the Environment (CARTHE)
Directional Wind–Wave Coupling in Fully Coupled Atmosphere–Wave–Ocean Models: Results from CBLAST-Hurricane
Equatorial Dry Air Intrusion and Related Synoptic Variability in MJO Initiation during DYNAMO
Bayesian Inference of Drag Parameters Using AXBT Data from Typhoon Fanapi
Symmetric and Asymmetric Structures of Hurricane Boundary Layer in Coupled Atmosphere–Wave–Ocean Models and Observations
Cloud Clusters and Tropical Cyclogenesis: Developing and Nondeveloping Systems and Their Large-Scale Environment
DYNAmics of the Madden-Julian Oscillation (DYNAMO) Legacy Data Products
DYNAmics of the Madden-Julian Oscillation (DYNAMO) Legacy Data Products
Collaborative Research: Dropsonde Measurements for Characterizing Lower Troposphere Moisture Variability and Air-sea Interaction over the Tropical Indian Ocean
Collaborative Research: Observational and Modeling Study of Hurricane Rainbands and Intensity Changes
Factors Controlling the Structure and Distribution of Precipitation in Hurricanes