Identificador persistente para citar o vincular este elemento: http://hdl.handle.net/10553/113412
Título: Impact of climate change on the hydrology of the forested watershed that drains to lake erken in sweden: An analysis using swat+ and cmip6 scenarios
Autores/as: Jiménez-Navarro, Inmaculada C.
Jimeno-Sáez, Patricia
López-Ballesteros, Adrián
Perez Sanchez, Julio 
Senent-Aparicio, Javier
Clasificación UNESCO: 2502 Climatología
2508 Hidrología
Palabras clave: Hydrological Cycle
Hydrological Modelling
Swat Model
Water Balance Alterations
Fecha de publicación: 2021
Publicación seriada: Agricultural and Forest Entomology 
Resumen: Precipitation and temperature around the world are expected to be altered by climate change. This will cause regional alterations to the hydrological cycle. For proper water management, anticipating these changes is necessary. In this study, the basin of Lake Erken (Sweden) was simu-lated with the recently released software SWAT+ to study such alterations in a short (2026–2050), medium (2051–2075) and long (2076–2100) period, under two different climate change scenarios (SSP2-45 and SSP5-85). Seven global climate models from the latest projections of future climates that are available (CIMP 6) were compared and ensembled. A bias-correction of the models’ data was performed with five different methods to select the most appropriate one. Results showed that the temperature is expected to increase in the future from 2 to 4 °C, and precipitation from 6% to 20%, depending on the scenario. As a result, water discharge would also increase by about 18% in the best-case scenario and by 50% in the worst-case scenario, and the surface runoff would increase between 5% and 30%. The floods and torrential precipitations would also increase in the basin. This trend could lead to soil impoverishment and reduced water availability in the basin, which could damage the watershed’s forests. In addition, rising temperatures would result in a 65% reduction in the snow water equivalent at best and 92% at worst.
URI: http://hdl.handle.net/10553/113412
ISSN: 1999-4907
DOI: 10.3390/f12121803
Fuente: Forests[EISSN 1999-4907],v. 12 (12), (Diciembre 2021)
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