Area of research
Global and Planetary Change · Atmospheric Science
Research interest
Research interests include Environmental science, Atmospheric sciences, Meteorology, Liquid water content, Aerosol, and Bin.
Unveiling Aerosol Impacts on Deep Convective Clouds: Scientific Concept, Modeling, Observational Analysis, and Future Direction
The Role of the Toroidal Vortex in Cumulus Clouds' Entrainment and Mixing
Distinct Mixing Regimes in Shallow Cumulus Clouds
Dynamics and microphysics in small developing cumulus clouds
The Impact of Cumulus Clouds and CCN Regeneration on Aerosol Vertical Distribution and Size
Convective and Turbulent Motions in Nonprecipitating Cu. Part III: Characteristics of Turbulence Motions
Vortex Structure of Head Bubble in Convective Cloud Starting Plume
Measurement of Flare Size Distribution and Simulation of Seeding Effect with a Spectral Bin Parcel Model
Aerosol Indirect Effects on Water Vapor in the UTLS of Typhoon Saomai (2006)
Large‐Eddy Simulations of a Convection Cloud Chamber: Sensitivity to Bin Microphysics and Advection
Warm-phase spectral-bin microphysics in ICON: reasons of sensitivity to aerosols
Gravitational Collision of Small Nonspherical Particles: Swept Volumes of Prolate and Oblate Spheroids in Calm Air
Shallow Cumulus Properties as Captured by Adiabatic Fraction in High-Resolution LES Simulations
Comments on “Do Ultrafine Cloud Condensation Nuclei Invigorate Deep Convection?”
Revisiting adiabatic fraction estimations in cumulus clouds: high-resolution simulations with a passive tracer
Combined Effect of the Wegener–Bergeron–Findeisen Mechanism and Large Eddies on Microphysics of Mixed-Phase Stratiform Clouds
Convective and Turbulent Motions in Nonprecipitating Cu. Part I: Method of Separation of Convective and Turbulent Motions
Convective and Turbulent Motions in Nonprecipitating Cu. Part II: LES Simulated Cloud Represented by a Starting Plume
Cloud microphysical structure analysis based on high-resolution insitu measurements
Impacts of Non-Local versus Local Moisture Sources on a Heavy (and Deadly) Rain Event in Israel
Toward a Theory of the Evolution of Drop Morphology and Splintering by Freezing
What Polarimetric Weather Radars Offer to Cloud Modelers: Forward Radar Operators and Microphysical/Thermodynamic Retrievals
The Role of Ice Splintering on Microphysics of Deep Convective Clouds Forming Under Different Aerosol Conditions: Simulations Using the Model With Spectral Bin Microphysics
Response of Hurricane Harvey’s rainfall to anthropogenic aerosols: A sensitivity study based on spectral bin microphysics with simulated aerosols
Using Factor Separation to Elucidate the Respective Contributions of Desert Dust and Urban Pollution to the 4 January 2020 Tel Aviv Lightning and Flash Flood Disaster
An Examination of the Impact of Grid Spacing on WRF Simulations of Wintertime Precipitation in the Mid-Atlantic United States
Cloud‐Resolving Model Intercomparison of an MC3E Squall Line Case: Part II. Stratiform Precipitation Properties
Simulating a Mesoscale Convective System Using WRF With a New Spectral Bin Microphysics: 1: Hail vs Graupel
Effects of Sea Spray on the Dynamics and Microphysics of an Idealized Tropical Cyclone
Effects of Sea Spray on Microphysics and Intensity of Deep Convective Clouds Under Strong Winds