Area of research
Global and Planetary Change · Atmospheric Science
Research interest
Research interests include Fire effects on ecosystems, Atmospheric and Environmental Gas Dynamics, Atmospheric chemistry and aerosols, and Meteorological Phenomena and Simulations.
Harmful dust from drying lakes: Preserving Great Salt Lake (USA) water levels decreases ambient dust and racial disparities in population exposure
Dust in the Critical Zone: North American case studies
Generative Algorithms for Fusion of Physics-Based Wildfire Spread Models with Satellite Data for Initializing Wildfire Forecasts
The shrinking Great Salt Lake contributes to record high dust-on-snow deposition in the Wasatch Mountains during the 2022 snowmelt season
Wildfire plumes in the Western US are reaching greater heights and injecting more aerosols aloft as wildfire activity intensifies
The Information Content of Dense Carbon Dioxide Measurements from Space: A High-Resolution Inversion Approach with Synthetic Data from the OCO-3 Instrument
Short-term reduction of regional enhancement of atmospheric CO<sub>2</sub> in China during the first COVID-19 pandemic period
QES-Fire: a dynamically coupled fast-response wildfire model
Wildfire activity is driving summertime air quality degradation across the western US: a model-based attribution to smoke source regions
Coupled Air Quality and Boundary-Layer Meteorology in Western U.S. Basins during Winter: Design and Rationale for a Comprehensive Study
Machine Learning Estimation of Fire Arrival Time from Level-2 Active Fires Satellite Data
Expanding number of Western US urban centers face declining summertime air quality due to enhanced wildland fire activity
Integration of a Coupled Fire-Atmosphere Model Into a Regional Air Quality Forecasting System for Wildfire Events
Constraining Urban CO<sub><sub>2</sub></sub> Emissions Using Mobile Observations from a Light Rail Public Transit Platform
Evaluating Wildfire Smoke Transport Within a Coupled Fire‐Atmosphere Model Using a High‐Density Observation Network for an Episodic Smoke Event Along Utah's Wasatch Front
Incorporating a Canopy Parameterization within a Coupled Fire-Atmosphere Model to Improve a Smoke Simulation for a Prescribed Burn
Modeling Wildfire Smoke Feedback Mechanisms Using a Coupled Fire‐Atmosphere Model With a Radiatively Active Aerosol Scheme
Bayesian inverse estimation of urban CO2 emissions: Results from a synthetic data simulation over Salt Lake City, UT
Transboundary transport of biomass burning aerosols and photochemical pollution in the Orinoco River Basin
An Interactive Data-Driven HPC System for Forecasting Weather, Wildland Fire, and Smoke
Long-term urban carbon dioxide observations reveal spatial and temporal dynamics related to urban characteristics and growth
Implications of a shrinking Great Salt Lake for dust on snow deposition in the Wasatch Mountains, UT, as informed by a source to sink case study from the 13–14 April 2017 dust event
Optimizing Smoke and Plume Rise Modeling Approaches at Local Scales
How can mountaintop CO <sub>2</sub> observations be used to constrain regional carbon fluxes?
Full Coupling Between the Atmosphere, Surface, and Subsurface for Integrated Hydrologic Simulation
Stable Isotope Analysis of Precipitation Samples Obtained via Crowdsourcing Reveals the Spatiotemporal Evolution of Superstorm Sandy
Impacts of upwind wildfire emissions on CO, CO<sub>2,</sub> and PM<sub>2.5</sub> concentrations in Salt Lake City, Utah