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BibEntryCargo > Year: 2023 & Volume: None & Note: Auto downloaded ref at: 2024-09-07

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A conceptual framework to disentangle land use and climate change impacts on water balance components and sediment yield (1) · Application of SWAT/MIKE tools for assessment of river water environmental capacity – Ben Tuong – Suoi Tre watershed, Binh Duong (1) · Applications for Aquatic Remote Sensing and Swat Modeling: Tracking the Wildfire Response of California's Giant Kelp Forests (1) · Dynamic probabilistic analytical modeling for estimating rainfall–runoff transformation rates in drylands (1) · Eco-Hydrological Modelling of a Highly Managed Mediterranean Basin Using the SWAT+ Model: A Preliminary Approach (1) · Establishment of SWAT Model Spatial Database Based on PSO Optimization Algorithm (1) · Estimation of Blue and Green Water Potentials of Türkiye under Global Climate Change Effects (1) · Estimation of an extreme flood scenario induced by heavy precipitation, following wildfires for the North - Central California (1) · Evaluation of simulation effect and uncertainty analysis of SWAT model driven by CMADS and traditional meteorological station data in the Lancang River Basin, China (1) · Hydrologic responses to climate and land use/cover changes in world heritage site of Ngorongoro conservation area and surrounding catchments, northern Tanzania (1) · Hydrological Implications of LULC Changes in the Netravathi River Basin: Insights from SWAT Modeling and Machine Learning Techniques (1) · Hydrological Response Assessment of Land Cover Change in a Peruvian Amazonian Basin Impacted by Deforestation Using the SWAT Model (1) · Hydrological model of Ukraine: setup, calibration, and web interface (1) · Identifying the Impacts of Land Use Landscape Pattern and Climate Changes on Streamflow From Past to Future (1) · Leveraging high-performance computing facilities for the SWAT water quality catchment model (1) · Parallel simulation of hydrological model based on container and automated deployment tools (1) · Projection of monthly surface flows by an optimized SWAT–MLP: a case study (1)
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