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BibEntryCargo > Journal : Journal of Hydrology or Science in China Series D & Note: Auto downloaded ref at: 2020-06-25

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A surrogate model for the Variable Infiltration Capacity model using deep learning artificial neural network (1) · A wavelet perspective on variabilities of hydrological processes in conjunction with geomorphic analysis over the Pearl River basin in South China (1) · An advanced error correction methodology for merging in-situ observed and model-based soil moisture (1) · An improved operation-based reservoir scheme integrated with Variable Infiltration Capacity model for multiyear and multipurpose reservoirs (1) · Analyzing the uncertainty of ensemble-based gridded observations in land surface simulations and drought assessment (1) · Daily anomalous high flow (DAHF) of a headwater catchment over the East River basin in South China (1) · Diurnal cycles of evaporation using a two-layer hydrological model (1) · Effect of heteroscedasticity treatment in residual error models on model calibration and prediction uncertainty estimation (1) · Enhancing real-time streamflow forecasts with wavelet-neural network based error-updating schemes and ECMWF meteorological predictions in Variable Infiltration Capacity model (1) · Flash droughts in a typical humid and subtropical basin: A case study in the Gan River Basin, China (1) · Future hydropower generation prediction of large-scale reservoirs in the upper Yangtze River basin under climate change (1) · Hydrological modelling of the Iberá Wetlands in southeastern South America (1) · Impacts of increased CO2 on the hydrologic response over the Xijiang (West River) basin, South China (1) · Improvements of the spatially distributed hydrological modelling using the HBV model at 1 km resolution for Norway (1) · Relationships between oceanic–atmospheric patterns and soil moisture in the Upper Colorado River Basin (1) · Using cumulative potential recharge for selection of GCM projections to force regional groundwater models: A Nebraska Sand Hills example (1) · Using multiple satellite-gauge merged precipitation products ensemble for hydrologic uncertainty analysis over the Huaihe River basin (1)
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