Simulated chlorophyll-a values with Delft3D – Experiment B2- Section 4
Simulated chlorophyll-a values with Delft3D – Experiment B2- Section 4
Simulated chlorophyll-a values with Delft3D – Experiment B2- Section 3
Simulated chlorophyll-a values with Delft3D – Experiment B2- Section 3
Simulated chlorophyll-a values with Delft3D – Experiment B2- Section 2
Simulated chlorophyll-a values with Delft3D – Experiment B2- Section 2
Simulated chlorophyll-a values with Delft3D – Experiment B2- Section 1
Simulated chlorophyll-a values with Delft3D – Experiment B2- Section 1
EO-based chlorophyll-a values from Sentinel-2/Landsat-8
EO-based chlorophyll-a values from Sentinel-2/Landsat-8
Simulated surface water temperature for Lake Harsha (ExpB4)
Simulated surface water temperature for Lake Harsha (ExpB4)
Re-forecasts of chlorophyll-a concentrations for Lake Hume using Random Forests
Re-forecasts of chlorophyll-a concentrations for Mulargia reservoir using Random Forests
Simulated chlorophyll-a concentrations for Lake Hume using Quantile Regression Forests
Simulated chlorophyll-a concentrations for Mulargia reservoir using Quantile Regression Forests
Simulated chlorophyll-a concentrations for Lake Hume using Random Forests
Simulated chlorophyll-a concentrations for Mulargia reservoir using Random Forests and Gaussian Process Regression models
Corrected surface water temperatures using Gaussian Regression Process and process-based hydrodynamic models
Simulated chlorophyll-a concentrations for Mulargia reservoir using Random Forests and Gaussian Process Regression models
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