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BibEntryCargo > Year: January 1, 2024 & Volume : 1 or 94-463

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A CMIP6 multi-model ensemble-based analysis of potential climate change impacts on irrigation water demand and supply using SWAT and CROPWAT models: a case study of Akmese Dam, Turkey (1) · A Comprehensive Probabilistic Flood Assessment Accounting for Hydrograph Variability of ESL Events (1) · A high-precision prediction method for coarse grids based on deep learning and the Weather Research and Forecasting model (1) · A machine‐learning and data assimilation forecasting framework for surface waves (1) · DNS-Based Turbulent Closures for Sediment Transport Using Symbolic Regression (1) · Effects of climate and winter cover crops on nutrient loss in agricultural watersheds in the midwestern U.S. (1) · Estimation of monthly snowmelt contribution to runoff using gridded meteorological data in SWAT model for Upper Alaknanda River Basin, India (1) · Evaluating the effects of DEM and soil data resolution on streamflow and sediment yield simulations in the Upper Blue Nile basin (1) · Hindcasting compound pluvial, fluvial and coastal flooding during Hurricane Harvey (2017) using Delft3D-FM (1) · Improvement and Analysis for Accuracy of Baseflow Using SWAT-CUP Premium in the Yongjeon Stream, South Korea (1) · Improving rainfall forecast at the district scale over the eastern Indian region using deep neural network (1) · Large discrepancy between future demand and supply of agricultural water in northwestern Iran; evidence from WEAP-MODFLOW-machine learning under the CMIP6 scenario (1) · Multi-scale numerical simulations of the synoptic environment, Diablo windstorm, and wildfire formation mechanisms for the Tubbs Fire (2017) (1) · Prioritizing conservation practice locations for effective water quality improvement using the Agricultural Conservation Planning Framework (ACPF) and the Soil and Water Assessment Tool (SWAT) (1) · Toward an Online Monitoring of Structural Performance Based on Physics-Informed Hybrid Modeling Method (1) · UIDS: A Matlab-based urban flood model considering rainfall-induced and surcharge-induced inundations (1)
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