Area of research
Water Science and Technology · Global and Planetary Change
Research interest
Research interests include Environmental science, Climatology, Precipitation, Streamflow, Snow, and Surface runoff.
Building cyberinfrastructure for the reuse and reproducibility of complex hydrologic modeling studies
When and Where Are Multiple Snow Layers Important for Simulations of Snow Accumulation and Melt?
Community Workflows to Advance Reproducibility in Hydrologic Modeling: Separating Model‐Agnostic and Model‐Specific Configuration Steps in Applications of Large‐Domain Hydrologic Models
A Process-Conditioned and Spatially Consistent Method for Reducing Systematic Biases in Modeled Streamflow
Simulating human impacts on global water resources using VIC-5
Hillslope Hydrology in Global Change Research and Earth System Modeling
How Do Modeling Decisions Affect the Spread Among Hydrologic Climate Change Projections? Exploring a Large Ensemble of Simulations Across a Diversity of Hydroclimates
Quantifying Process Connectivity With Transfer Entropy in Hydrologic Models
Simulating human impacts on global water resources usingVIC-5
Benchmarking and Process Diagnostics of Land Models
Evaluation of the atmosphere–land–ocean–sea ice interface processes in the Regional Arctic System Model version 1 (RASM1) using local and globally gridded observations
Effects of climate change on snowpack and fire potential in the western USA
The Olympic Mountains Experiment (OLYMPEX)
Development of the Regional Arctic System Model (RASM): Near-Surface Atmospheric Climate Sensitivity
Value of long‐term streamflow forecasts to reservoir operations for water supply in snow‐dominated river catchments
Land Surface Climate in the Regional Arctic System Model
Changes in observed climate extremes in global urban areas
Is climate change implicated in the 2013–2014 California drought? A hydrologic perspective
Seasonal hydrologic responses to climate change in the <scp>P</scp>acific <scp>N</scp>orthwest
Simulating transient ice-ocean Ekman transport in the Regional Arctic System Model and Community Earth System Model
Moisture flux convergence in regional and global climate models: Implications for droughts in the southwestern United States under climate change