Area of research
Global and Planetary Change · Atmospheric Science
Research interest
Research interests include Environmental science, Atmospheric sciences, Meteorology, Ice crystals, Cirrus, and Ice cloud.
A review of the <scp>FATIMA Yellow Sea</scp> field campaign research
Vertical Wind Tunnel Experiments and a Theoretical Study on the Microphysics of Melting Low-Density Graupel
A Review of Coastal Fog Microphysics During C-FOG
Survival of Snow in the Melting Layer: Relative Humidity Influence
A Wind Tunnel Investigation into the Aerodynamics of Lobed Hailstones
A Review of Ice Particle Shapes in Cirrus formed In Situ and in Anvils
A Comprehensive Observational Study of Graupel and Hail Terminal Velocity, Mass Flux, and Kinetic Energy
Properties of individual contrails: a compilation of observations and some comparisons
Toward Improving Ice Water Content and Snow-Rate Retrievals from Radars. Part II: Results from Three Wavelength Radar–Collocated In Situ Measurements and CloudSat–GPM–TRMM Radar Data
Chapter 7. Secondary Ice Production - current state of the science and recommendations for the future
Dependence of the Ice Water Content and Snowfall Rate on Temperature, Globally: Comparison of in Situ Observations, Satellite Active Remote Sensing Retrievals, and Global Climate Model Simulations
Properties of individual contrails: A compilation of observations and some comparisons
Representation of microphysical processes in cloud‐resolving models: Spectral (bin) microphysics versus bulk parameterization
The Midlatitude Continental Convective Clouds Experiment (MC3E)
Cloud Conditions Favoring Secondary Ice Particle Production in Tropical Maritime Convection
Influence of Ice Particle Surface Roughening on the Global Cloud Radiative Effect
Understanding the Relationships between Lightning, Cloud Microphysics, and Airborne Radar-Derived Storm Structure during Hurricane Karl (2010)
NASA's Genesis and Rapid Intensification Processes (GRIP) Field Experiment
Numerical analysis using WRF‐SBM for the cloud microphysical structures in the C3VP field campaign: Impacts of supercooled droplets and resultant riming on snow microphysics