Area of research
Water Science and Technology · Global and Planetary Change
Research interest
Research focused on Precipitation and Environmental science, with related work in Climatology, Streamflow, Water resources. Notable publications include 'Water governance in Chile: Availability, management and climate change', 'Non-stationary frequency analysis of extreme precipitation in South Korea using peaks-over-threshold and annual maxima', and 'Water Management Applications for Satellite Precipitation Products: Synthesis and Recommendations'.
Assessing hydrological impacts of short-term climate change in the Mara River basin of East Africa
Multi-decadal 40- to 60-year cycles of precipitation variability in Chile (South America) and their relationship to the AMO and PDO signals
Using satellite-based evapotranspiration estimates to improve the structure of a simple conceptual rainfall–runoff model
Análisis de sequías meteorológicas en la cuenca del río Fuerte, México
Evaluation of the Performance of Three Satellite Precipitation Products over Africa
A platform for probabilistic Multimodel and Multiproduct Streamflow Forecasting
Bias correction of daily satellite-based rainfall estimates for hydrologic forecasting in the Upper Zambezi, Africa
Improvement of the integration of Soil Moisture Accounting into the NRCS-CN model
Non-stationary frequency analysis of extreme precipitation in South Korea using peaks-over-threshold and annual maxima
Analysis of spatio‐temporal changes in annual and seasonal precipitation variability in South America‐Chile and related ocean–atmosphere circulation patterns
Spatio-temporal trends of precipitation, its aggressiveness and concentration, along the Pacific coast of South America (36–49°S)
Water governance in Chile: Availability, management and climate change
Respiratory disease and particulate air pollution in Santiago Chile: Contribution of erosion particles from fine sediments
Water Management Applications for Satellite Precipitation Products: Synthesis and Recommendations
Climate change projection of snowfall in the Colorado River Basin using dynamical downscaling