Area of research
Atmospheric Science · Environmental Engineering
Research interest
Research focused on Radar and Graupel, with related work in Squall line, Convection, Meteorology. Notable publications include 'Derivation of aerosol profiles for MC3E convection studies and use in simulations of the 20 May squall line case', 'Simulating a Mesoscale Convective System Using WRF With a New Spectral Bin Microphysics: 1: Hail vs Graupel', and 'Use of polarimetric radar measurements to constrain simulated convective cell evolution: a pilot study with Lagrangian tracking'.
Synergetic Use of the WSR-88D Radars, GOES-R Satellites, and Lightning Networks to Study Microphysical Characteristics of Hurricanes
Simulating a Mesoscale Convective System Using WRF With a New Spectral Bin Microphysics: 1: Hail vs Graupel
Use of polarimetric radar measurements to constrain simulated convective cell evolution: a pilot study with Lagrangian tracking
Polarimetric Radar Convective Cell Tracking Reveals Large Sensitivity of Cloud Precipitation and Electrification Properties to CCN
Tracking and characterization of convective cells through their maturation into stratiform storm elements using polarimetric radar and lightning detection
Derivation of aerosol profiles for MC3E convection studies and use in simulations of the 20 May squall line case
Theory of Time-Dependent Freezing. Part II: Scheme for Freezing Raindrops and Simulations by a Cloud Model with Spectral Bin Microphysics