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BibEntryCargo > Journal : Journal of Hydrology or Water Resources Research & Note: Auto downloaded ref at: 2020-06-10

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A first large-scale flood inundation forecasting model: Large-Scale Flood Inundation Forecasting (1) · Assessment of the effects of spatial resolutions on daily water flux simulations (1) · Attribution for decreasing streamflow of the Haihe River basin, northern China: Climate variability or human activities? (1) · Bayesian analysis of input uncertainty in hydrological modeling: 2. Application: INPUT UNCERTAINTY IN HYDROLOGY, 2 (1) · Development of regional parameter estimation equations for a macroscale hydrologic model (1) · Effects of land use changes on streamflow generation in the Rhine basin: EFFECTS OF LAND USE CHANGES ON STREAMFLOW (1) · Evaluation of the latest satellite–gauge precipitation products and their hydrologic applications over the Huaihe River basin (1) · Hydrologic evaluation of Multisatellite Precipitation Analysis standard precipitation products in basins beyond its inclined latitude band: A case study in Laohahe basin, China: HYDROLOGIC EVALUATION OF TMPA PRODUCTS (1) · Hydrological climate change projections for Central America (1) · Impacts of land-use change on hydrologic responses in the Great Lakes region (1) · Integrated index for drought assessment based on variable fuzzy set theory: A case study in the Yellow River basin, China (1) · Macroscale hydrologic modeling of ecologically relevant flow metrics: MODELING ECOLOGICAL STREAM FLOW METRICS (1) · Real-time global flood estimation using satellite-based precipitation and a coupled land surface and routing model (1) · Seasonal hydrologic responses to climate change in the P acific N orthwest (1) · The impacts of climate change and land cover/use transition on the hydrology in the upper Yellow River Basin, China (1) · Value of long-term streamflow forecasts to reservoir operations for water supply in snow-dominated river catchments: VALUE OF LONG-TERM FORECASTS TO RESERVOIR OPERATIONS (1) · Water balance versus land surface model in the simulation of Rhine river discharges: WATER BALANCE VERSUS LAND SURFACE MODEL (1)
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