Hydrological Responses to Climate Change and Land-Use Dynamics in Central Asia's Semi-arid Regions: An SWAT Model Analysis of the Tuul River Basin
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Springer Science and Business Media LLC
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https://link.springer.com/content/pdf/10.1007/s41748-023-00367-9.pdf
Reference113 articles.
1. Abbaspour KC, Vaghefi SA, Srinivasan R (2017) A guideline for successful calibration and uncertainty analysis for soil and water assessment: a review of papers from the 2016 international SWAT conference. Water 10(1):6
2. Aboelnour M, Gitau MW, Engel BA (2020) A comparison of streamflow and baseflow responses to land-use change and the variation in climate parameters using SWAT. Water 12(1):191
3. Almaraz JJ, Mabood F, Zhou X, Gregorich EG, Smith DL (2008) Climate change, weather variability and corn yield at a higher latitude locale: Southwestern Quebec. Clim Change 88:187–197
4. Altaf F, Meraj G, Romshoo SA (2013) Morphometric analysis to infer hydrological behaviour of Lidder watershed, Western Himalaya. India Geography J 7:2013
5. Anjuma MN, Dinga Y, Shangguana D (2019) Simulation of the projected climate change impacts on the river flow regimes under CMIP5 RCP scenarios in the westerlies dominated belt, northern Pakistan. Athmosp Res 227:233–248
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