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Advanced Hydrologic Modeling in Watershed Scales
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Hydrologic modeling at the watershed scale is a key topic in the field of hydrology. The hydrological model is an important tool in understanding the impact of climate change and human activities on rainfall–runoff processes, and especially on water resources for human beings in a changing environment. In the last two decades, with the development of satellite remote sensing and artificial intelligence, many new datasets and methods have been introduced into hydrological modeling.Hydrologic modeling at the watershed scale is an important and fundamental research field in hydrology. Therefore, we proposed a Special Issue entitled "Advanced Hydrologic Modeling in Watershed Scales" in Water to publish results regarding the recent progress in hydrological modeling at the watershed scale against global changes. Before the deadline for the submission of manuscripts to this Special Issue, we received many manuscripts regarding hydrological modeling at the watershed scale. In total, ten articles have been published in this Special Issue. Researchers interested in hydrological modeling and the impacts of environmental changes on water resources may be interested in this reprint.
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Keywords
- ATIMR
- base flow
- basin water balance
- Climate Change
- climatic variables
- ecological compensation
- Economics
- Economics, finance, business & management
- Environmental economics
- Euphrates River
- Evaluation
- evapotranspiration
- Geographical information systems
- GR3 model
- grain for green
- Groundwater
- groundwater assessment
- groundwater recharge
- HEC-HMS
- human activities
- hydrologic modeling
- hydrological calibration
- hydrological model
- hydrological modelling
- hydrological simulation
- Illinois River watershed
- Irrigation
- Islamabad
- Kırkgöze–Çipak Basin
- leaf area index
- Loess Plateau
- long-term series
- low flow simulation
- n/a
- non-point-source pollution
- objective functions
- potential evapotranspiration
- Reference, information & interdisciplinary subjects
- Remote sensing
- Research & information: general
- revegetation
- satellite rainfall
- semi-arid basin
- simulation
- single flood process
- snowmelt
- streamflow prediction
- support vector regression
- surface runoff
- SWAT
- time-varying parameters
- trans-regional river
- urban hydrology simulation
- wavelet transform
- Weihe River Basin