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DOI10.1016/j.atmosres.2020.104973
Snowpack sensitivity to temperature; precipitation; and solar radiation variability over an elevational gradient in the Iberian mountains
Alonso-González E.; López-Moreno J.I.; Navarro-Serrano F.; Sanmiguel-Vallelado A.; Aznárez-Balta M.; Revuelto J.; Ceballos A.
发表日期2020
ISSN0169-8095
卷号243
英文摘要In this study we investigated the sensitivity of the snowpack to increased temperature and short-wave radiation, and precipitation change along an elevation gradient (1500–2500 m a.s.l.) over the main mountain ranges of the Iberian Peninsula (Cantabrian Range, Central Range, Iberian Range, Pyrenees, and the Sierra Nevada). The output of a meso-atmospheric model (WRF) was used as forcing data in a physically-based energy and mass balance snowpack model (FSM2). A cluster analyses was applied to the input data of the FSM2 model to identify a total of 12 cells that summarized the climatic variability of the mountain ranges. The WRF output was then rescaled to various elevation bands using an array of psychrometric and radiative formulae and air temperature lapse rates. A factorial experiment was performed to generate synthetic meteorological series involving gradual alteration of the temperature (0–4 °C increases), short-wave radiation (0–40 Wm-2 increases), and precipitation (variations of ±20%) to force the FSM2. We found differing sensitivities across the various mountainous areas as a consequence of differences in their energy and mass balances. The results showed a generally negative impact of climate warming on the magnitude, duration, and melt rates of the snowpack over all elevation bands, even under scenarios of greater precipitation. The average effect of warming on the duration of the snowpack ranged from −23% per °C at 1500 m a.s.l. to −13% per °C at 2500 m a.s.l., on the peak snow water equivalent ranged from −20% per °C at 1500 m a.s.l. to −15% per °C at 2500 m a.s.l., and on melt rates ranged from −9% to −6% per °C. The effect of increasing short-wave radiation on the snowpack ranged from approximately −2% per 10 Wm−2 at 1500 m a.s.l. to −1% per 10 Wm−2 at 2500 m a.s.l. for both the snowpack duration and peak SWE indices. The effect on the snowpack caused by precipitation changes reduced gradually with increasing elevation, especially in the colder areas. The response of the melt rates to warming was negative in most of the areas at all elevations, suggesting less intense but longer melt seasons. © 2020 Elsevier B.V.
英文关键词Climate change; Iberian Peninsula; Snowpack; Snowpack simulations
语种英语
scopus关键词Cluster analysis; Landforms; Snow; Climatic variability; Elevational gradients; Factorial experiment; Increased temperature; Precipitation change; Sensitivity to temperatures; Snow water equivalent; Solar radiation variability; Atmospheric temperature; precipitation assessment; seasonal variation; sensitivity analysis; shortwave radiation; snowpack; solar radiation; temperature effect; Iberian Cordillera; Spain
来源期刊Atmospheric Research
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/141884
作者单位Instituto Pirenaico de Ecología, Consejo Superior de Investigaciones Científicas (IPE-CSIC), Zaragoza, Spain; Dept. Geografía, Universidad de Salamanca, Salamanca, Spain
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Alonso-González E.,López-Moreno J.I.,Navarro-Serrano F.,et al. Snowpack sensitivity to temperature; precipitation; and solar radiation variability over an elevational gradient in the Iberian mountains[J],2020,243.
APA Alonso-González E..,López-Moreno J.I..,Navarro-Serrano F..,Sanmiguel-Vallelado A..,Aznárez-Balta M..,...&Ceballos A..(2020).Snowpack sensitivity to temperature; precipitation; and solar radiation variability over an elevational gradient in the Iberian mountains.Atmospheric Research,243.
MLA Alonso-González E.,et al."Snowpack sensitivity to temperature; precipitation; and solar radiation variability over an elevational gradient in the Iberian mountains".Atmospheric Research 243(2020).
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