Area of research
Atmospheric Science · Global and Planetary Change
Research interest
Research interests include Isoprene, Troposphere, NOx, Trace gas, and Ozone.
Flash Characteristics and Precipitation Metrics of Western U.S. Lightning-Initiated Wildfires from 2017
Simulation of Chemical Transport by Typhoon Mireille (1991)
Using Radar-Derived Parameters to Develop Probabilistic Guidance for Lightning Cessation within Isolated Convection near Cape Canaveral, Florida
Simulations of Vertical Water Vapor Transport for TC Ingrid (2013)
Simulation of Chemical Transport by Typhoon Mireille (1991)
AGU Fall Meeting Abstracts 2018cited by 0position: middle
Validation of 10-year SAO OMI Ozone Profile (PROFOZ) product using ozonesonde observations
Infilling missing precipitation records using variants of spatial interpolation and data‐driven methods: use of optimal weighting parameters and nearest neighbour‐based corrections
WRF nested large‐eddy simulations of deep convection during SEAC<sup>4</sup>RS
An Analysis of Total Lightning Flash Rates Over Florida
Validation of 10-year SAO OMI Ozone Profile (PROFOZ) Product Using Ozonesonde Observations
Using radar‐derived parameters to forecast lightning cessation for nonisolated storms
Verification of Tropical Cyclone Genesis Forecasts from Global Numerical Models: Comparisons between the North Atlantic and Eastern North Pacific Basins
The Development and Evaluation of a Statistical–Dynamical Tropical Cyclone Genesis Guidance Tool
Assimilation of Lightning Data Using a Nudging Method Involving Low-Level Warming
Using a WRF simulation to examine regions where convection impacts the Asian summer monsoon anticyclone
The role of horizontal model resolution in assessing the transport of CO in a middle latitude cyclone using WRF-Chem
Improving Lightning Cessation Guidance Using Polarimetric Radar Data
The extension of lightning flashes from thunderstorms near Cape Canaveral, Florida
A Parameter for Forecasting Tornadoes Associated with Landfalling Tropical Cyclones
An Evaluation of Tropical Cyclone Genesis Forecasts from Global Numerical Models
Source attributions of pollution to the Western Arctic during the NASA ARCTAS field campaign
Documenting Storm Severity in the Mid-Atlantic Region Using Lightning and Radar Information
Understanding the Relationships between Lightning, Cloud Microphysics, and Airborne Radar-Derived Storm Structure during Hurricane Karl (2010)
Aerosol properties over Interior Alaska from lidar, DRUM Impactor sampler, and OPC-sonde measurements and their meteorological context during ARCTAS-A, April 2008
Using a WRF simulation to examine regions where convection impacts the Asian summer monsoon anticyclone
AGUFM 2013cited by 0position: last
Impact of the deep convection of isoprene and other reactive trace species on radicals and ozone in the upper troposphere