Area of research
Environmental Engineering · Atmospheric Science
Research interest
Research interests include Environmental science, Data assimilation, Water content, Remote sensing, Satellite, and Snow.
Benefits and pitfalls of irrigation timing and water amounts derived from satellite soil moisture
A machine learning approach for estimating snow depth across the European Alps from Sentinel-1 imagery
Tower-based C-band radar measurements of an alpine snowpack
Sensitivity of Sentinel-1 C-band SAR backscatter, polarimetry and interferometry to snow accumulation in the Alps
Contributions of Irrigation Modeling, Soil Moisture and Snow Data Assimilation to High‐Resolution Water Budget Estimates Over the Po Basin: Progress Towards Digital Replicas
Irrigation Estimation from Soil Water Balance and the Water Cloud Model by leveraging Sentinel-1 and Sentinel-2 observations
Hidden becomes clear: Optical remote sensing of vegetation reveals water table dynamics in northern peatlands
Identifying snowfall elevation patterns by assimilating satellite-based snow depth retrievals
Optimisation of AquaCrop backscatter simulations using Sentinel-1 observations
Bias-blind and bias-aware assimilation of leaf area index into the Noah-MP land surface model over Europe
A simple framework to calibrate a soil water balance model with Sentinel-1 and Sentinel-2 observations over irrigated fields
Combining land surface modelling and Earth observations: the key role of soil moisture data to improve estimates of agricultural water uses
Sentinel-1 snow depth retrieval at sub-kilometer resolution over the European Alps
The first global soil moisture and vegetation optical depth product retrieved from fused SMOS and SMAP L-band observations
An Agenda for Land Data Assimilation Priorities: Realizing the Promise of Terrestrial Water, Energy, and Vegetation Observations From Space
Perspective on satellite-based land data assimilation to estimate water cycle components in an era of advanced data availability and model sophistication
Evaluation of satellite and reanalysis estimates of surface and root-zone soil moisture in croplands of Jiangsu Province, China
Net irrigation requirement under different climate scenarios using AquaCrop over Europe
Tropical Peatland Hydrology Simulated With a Global Land Surface Model
Challenges and benefits of quantifying irrigation through the assimilation of Sentinel-1 backscatter observations into Noah-MP
Estimating global landslide susceptibility and its uncertainty through ensemble modeling
Lightning Over Central Canada: Skill Assessment for Various Land‐Atmosphere Model Configurations and Lightning Indices Over a Boreal Study Area
A Review of Irrigation Information Retrievals from Space and Their Utility for Users
A first assessment of satellite and reanalysis estimates of surface and root-zone soil moisture over the permafrost region of Qinghai-Tibet Plateau
Reanalysis in Earth System Science: Toward Terrestrial Ecosystem Reanalysis
Global sensitivity analysis of crop yield and transpiration from the FAO-AquaCrop model for dryland environments
Global Soil Water Estimates as Landslide Predictor: The Effectiveness of SMOS, SMAP, and GRACE Observations, Land Surface Simulations, and Data Assimilation
Optimizing a backscatter forward operator using Sentinel-1 data over irrigated land
The benefit of brightness temperature assimilation for the SMAP Level-4 surface and root-zone soil moisture analysis
Validation practices for satellite soil moisture retrievals: What are (the) errors?