Area of research
Water Science and Technology · Global and Planetary Change
Research interest
Research interests include Environmental science, Hydrology (agriculture), Groundwater, Computer science, Flood myth, and Geology.
Uncertainties as a Guide for Global Water Model Advancement
The Needs, Challenges, and Priorities for Advancing Global Flood Research
The Unexploited Treasures of Hydrological Observations Beyond Streamflow for Catchment Modeling
A review of open data for studying global groundwater in social–ecological systems
Current trends and biases in groundwater modelling using the community-driven groundwater model portal (GroMoPo)
A Perceptual Model of Drivers and Limiters of Coastal Groundwater Dynamics
Controls on coastal saline groundwater across North America
Uncertainty in model estimates of global groundwater depth
How to use the impossible map – Considerations for a rigorous exploration of Digital Twins of the Earth
Functional relationships reveal differences in the water cycle representation of global water models
Panta Rhei benchmark dataset: socio-hydrological data of paired events of floods and droughts
Towards parameter estimation in global hydrological models
<scp>GroMoPo</scp> : A Groundwater Model Portal for Findable, Accessible, Interoperable, and Reusable (FAIR) Modeling
GroMoPo: A Groundwater Model Portal for Findable, Accessible, Interoperable, and Reusable (FAIR) modeling
Submarine Groundwater Discharge and Seawater Intrusion: Two sides of the same coin that are rarely studied simultaneously
The challenge of unprecedented floods and droughts in risk management
How climate change and unplanned urban sprawl bring more landslides
A mechanistic approach to include climate change and unplanned urban sprawl in landslide susceptibility maps
Risk of groundwater contamination widely underestimated because of fast flow into aquifers
GMD perspective: The quest to improve the evaluation of groundwater representation in continental- to global-scale models
Illuminating water cycle modifications and Earth system resilience in the Anthropocene
Hillslope Hydrology in Global Change Research and Earth System Modeling
Enhanced groundwater recharge rates and altered recharge sensitivity to climate variability through subsurface heterogeneity
A large-scale simulation model to assess karstic groundwater recharge over Europe and the Mediterranean
A multi-criteria penalty function approach for evaluating a priori model parameter estimates
Advancing catchment hydrology to deal with predictions under change
Characterizing hydrologic change through catchment classification
A decade of Predictions in Ungauged Basins (PUB)—a review
“Panta Rhei—Everything Flows”: Change in hydrology and society—The IAHS Scientific Decade 2013–2022
Technical Note: Method of Morris effectively reduces the computational demands of global sensitivity analysis for distributed watershed models