Integrated Gradients (IG) analysis shows that the model learns physically coherent spatial behavior, highlighting grid cells near the outlet and identifying dominant meteorological drivers of peak runoff events, and outline a pathway toward interpretable, large‐scale streamflow prediction.
Jin-Yang Li, Kuo-Lin Hsu, S. Sorooshian et al.· Water Resources Research· 1 citation
The mechanistic understanding of biogeochemical dynamics in the Gulf of Guinea (GoG) has historically been hindered by persistent cloud cover and reliance on static geographic boundaries. In this study, we analysed a 20-year (2003–2022) satellite-derived chlorophyll-a (Chl-a) dataset to overcome these observational lim...
Loïc Cabrel Youmbi Tchaewo, C. Verpoorter, E. Alekseenko· Remote Sensing· 0 citations
Accurate flood forecasts several days in advance are essential for flood control, water-resource management, and emergency response. A central challenge is to produce high-resolution forecasts across continental domains where hydrological behavior varies widely from place to place. We developed Hapi, a U-Net Swin Trans...
Hong Zhang, John K. Hutchison, R. Kotamarthi et al.· 0 citations
Accurate estimation of terrestrial water storage change (TWSC) remains challenging in regions where hydrological variability interacts with complex geological conditions and intensive human activities. Taking the Loess Plateau (LP) in the middle Yellow River region as a case study, this work integrates GLDAS simulation...
Bo Zhang, Jiakui Tang, Danping Cao· Remote Sensing· 0 citations
This study develops a tree-based framework for simultaneous multi-step prediction of typhoon trajectory and intensity in Western North Pacific (WNP), and applies SHapley additive explanations (SHAP) to quantify the contribution of individual environmental drivers to each forecast.
H. Dang, M. Roantree, V. Tran· Environmental Research Commu...· 0 citations
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