Streamflow modeling of a large arid catchment using semi-distributed hydrological model and modular neural network
Explore this paper's citation graph
- Type
- dissertation
- Published
- 2013-10-01
- Cited by
- 1
- References
- 161
- OpenAlex
- https://openalex.org/W194962716
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:127017833
Keywords
Soil and Water Assessment Tool, Streamflow, SWAT model, Environmental science, Mean squared error
References
- 応用水文 = Applied hydrology
- Empirical Investigation of Curve Number Technique
- Modeling diffuse pollution with a distributed approach.
- Iran's Water Crisis: Cultural, Political, and Ethical Dimensions
- Infiltration-recharge through wadi beds in arid regions
- A Modified SCS-CN Method: Characterization and Testing
- What is groundwater?
- Hydrologic Simulations of the Maquoketa River Watershed Using SWAT
- Computer Models of Watershed Hydrology
- The water crisis
- Single Event Watershed Model for Simulating Runoff Hydrograph in Desert Regions
- Spiking modular neural networks: A neural network modeling approach for hydrological processes
- Simulating the impacts of climate variation and land-cover changes on basin hydrology: A case study of the Suomo basin
- Assessing the impact of climate change on water resources in Iran
- Sensitivity analysis and calibration of the parameters of ESWAT: application to the River Dender.
- Sensitivity analysis of a land surface scheme using multicriteria methods
- A review on theoretical consideration and types of models in hydrology
- Artificial Neural Networks for Forecasting Watershed Runoff and Stream Flows
- SWAT2009_LUC: A Tool to Activate the Land Use Change Module in SWAT 2009
- Impact of DEM mesh size and soil map scale on SWAT runoff, sediment, and NO3-N loads predictions
Cited by
Related papers
- Modeling daily stream flow using plant evapotranspiration method
- Modeling of sediment yield in Maybar gauged watershed using SWAT, northeast Ethiopia
- Streamflow Prediction Upstream of a Dam Using SWAT and Assessment of the Impact of Land Use Spatial Resolution on Model Performance
- Calibration and Validation of the SWAT Model on the Watershed of Bafing River, Main Upstream Tributary of Senegal River: Checking for the Influence of the Period of Study
- Calibration of a hydrological model and sensitivity analysis of its parameters: a case study of Seonath river basin
- SWAT model application in a data scarce tropical complex catchment in Tanzania
- Multi‐variable and multi‐site calibration and validation of SWAT in a large mountainous catchment with high spatial variability
- Comparison of SWAT and GWLF Model Simulation Performance in Humid South and Semi-Arid North of China
- Rainfall-runoff modelling using SWAT for Ong river basin