Twentieth century temperature and snow cover changes in the French Alps

被引:28
作者
Beaumet, Julien [1 ]
Menegoz, Martin [1 ]
Morin, Samuel [2 ]
Gallee, Hubert [1 ]
Fettweis, Xavier [3 ]
Six, Delphine [1 ]
Vincent, Christian [1 ]
Wilhelm, Bruno [1 ]
Anquetin, Sandrine [1 ]
机构
[1] Univ Grenoble Alpes, Inst Geosci Environm, CNRS, F-38000 Grenoble, France
[2] Univ Grenoble Alpes, Univ Toulouse, Ctr Etud Neige, Meteo France,CNRS,CNRM, F-38000 Grenoble, France
[3] Univ Liege, Dept Geog, Lab Climatol, FRS FNRS, B-4000 Liege, Belgium
关键词
Regional climate change; Climatic trends; Regional climate modeling; European Alps; High mountain; SURFACE MASS-BALANCE; CLIMATE-CHANGE; EUROPEAN ALPS; AVALANCHE ACTIVITY; KATABATIC WINDS; TRENDS; MODEL; PRECIPITATION; REANALYSIS; SERIES;
D O I
10.1007/s10113-021-01830-x
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Changes in snow cover associated with the warming of the French Alps greatly influence social-ecological systems through their impact on water resources, mountain ecosystems, economic activities, and glacier mass balance. In this study, we investigated trends in snow cover and temperature over the twentieth century using climate model and reanalysis data. The evolution of temperature, precipitation and snow cover in the European Alps has been simulated with the Modele Atmospherique Regional (MAR) applied with a 7-km horizontal resolution and driven by ERA-20C (1902-2010) and ERA5 (1981-2018) reanalyses data. Snow cover duration and snow water equivalent (SWE) simulated with MAR are compared to the SAFRAN - SURFEX-ISBA-Crocus - MEPRA meteorological and snow cover reanalysis (S2M) data across the French Alps (1958-2018) and in situ glacier mass balance measurements. MAR outputs provide a realistic distribution of SWE and snow cover duration as a function of elevation in the French Alps. Large disagreements are found between the datasets in terms of absolute warming trends over the second part of the twentieth century. MAR and S2M trends are in relatively good agreement for the decrease in snow cover duration, with higher decreases at low elevation (similar to 5-10%/decade). Consistent with other studies, the highest warming rates in MAR occur at low elevations (< 1000 m a.s.l) in winter, whereas they are found at high elevations (> 2000 m a.s.l) in summer. In spring, warming trends show a maximum at intermediate elevations (1500 to 1800 m). Our results suggest that higher warming at these elevations is mostly linked to the snow-albedo feedback in spring and summer caused by the disappearance of snow cover at higher elevation during these seasons. This work has evidenced that depending on the season and the period considered, enhanced warming at higher elevations may or may not be found. Additional analysis in a physically comprehensive way and more high-quality dataset, especially at high elevations, are still required to better constrain and quantify climate change impacts in the Alps and its relation to elevation.
引用
收藏
页数:13
相关论文
共 72 条
[1]   HISTALP -: historical instrumental climatological surface time series of the Greater Alpine Region [J].
Auer, Ingeborg ;
Boehm, Reinhard ;
Jurkovic, Anita ;
Lipa, Wolfgang ;
Orlik, Alexander ;
Potzmann, Roland ;
Schoener, Wolfgang ;
Ungersboeck, Markus ;
Matulla, Christoph ;
Briffa, Keith ;
Jones, Phil ;
Efthymiadis, Dimitrios ;
Brunetti, Michele ;
Nanni, Teresa ;
Maugeri, Maurizio ;
Mercalli, Luca ;
Mestre, Olivier ;
Moisselin, Jean-Marc ;
Begert, Michael ;
Mueller-Westermeier, Gerhard ;
Kveton, Vit ;
Bochnicek, Oliver ;
Stastny, Pavel ;
Lapin, Milan ;
Szalai, Sandor ;
Szentimrey, Tamas ;
Cegnar, Tanja ;
Dolinar, Mojca ;
Gajic-Capka, Marjana ;
Zaninovic, Ksenija ;
Majstorovic, Zeljko ;
Nieplova, Elena .
INTERNATIONAL JOURNAL OF CLIMATOLOGY, 2007, 27 (01) :17-46
[2]   Long-term area-mean temperature series for SwitzerlandCombining homogenized station data and high resolution grid data [J].
Begert, Michael ;
Frei, Christoph .
INTERNATIONAL JOURNAL OF CLIMATOLOGY, 2018, 38 (06) :2792-2807
[3]   Climatic change at high elevation sites: An overview [J].
Beniston, M ;
Diaz, HF ;
Bradley, RS .
CLIMATIC CHANGE, 1997, 36 (3-4) :233-251
[4]   The European mountain cryosphere: a review of its current state, trends, and future challenges [J].
Beniston, Martin ;
Farinotti, Daniel ;
Stoffel, Markus ;
Andreassen, Liss M. ;
Coppola, Erika ;
Eckert, Nicolas ;
Fantini, Adriano ;
Giacona, Florie ;
Hauck, Christian ;
Huss, Matthias ;
Huwald, Hendrik ;
Lehning, Michael ;
Lopez-Moreno, Juan-Ignacio ;
Magnusson, Jan ;
Marty, Christoph ;
Moran-Tejeda, Enrique ;
Morin, Samuel ;
Naaim, Mohamed ;
Provenzale, Antonello ;
Rabatel, Antoine ;
Six, Delphine ;
Stoetter, Johann ;
Strasser, Ulrich ;
Terzago, Silvia ;
Vincent, Christian .
CRYOSPHERE, 2018, 12 (02) :759-794
[5]   Rain-on-snow events, floods and climate change in the Alps: Events may increase with warming up to 4 °C and decrease thereafter [J].
Beniston, Martin ;
Stoffel, Markus .
SCIENCE OF THE TOTAL ENVIRONMENT, 2016, 571 :228-236
[6]   Do changes in snow conditions have an impact on snowmaking investments in French Alps ski resorts? [J].
Berard-Chenu, Lucas ;
Cognard, Jonathan ;
Francois, Hugues ;
Morin, Samuel ;
George, Emmanuelle .
INTERNATIONAL JOURNAL OF BIOMETEOROLOGY, 2021, 65 (05) :659-675
[7]   A critical assessment of the long-term changes in the wintertime surface Arctic Oscillation and Northern Hemisphere storminess in the ERA20C reanalysis [J].
Bloomfield, H. C. ;
Shaffrey, L. C. ;
Hodges, K., I ;
Vidale, P. L. .
ENVIRONMENTAL RESEARCH LETTERS, 2018, 13 (09)
[8]   A deep learning reconstruction of mass balance series for all glaciers in the French Alps: 1967-2015 [J].
Bolibar, Jordi ;
Rabatel, Antoine ;
Gouttevin, Isabelle ;
Galiez, Clovis .
EARTH SYSTEM SCIENCE DATA, 2020, 12 (03) :1973-1983
[9]   A NUMERICAL-MODEL TO SIMULATE SNOW-COVER STRATIGRAPHY FOR OPERATIONAL AVALANCHE FORECASTING [J].
BRUN, E ;
DAVID, P ;
SUDUL, M ;
BRUNOT, G .
JOURNAL OF GLACIOLOGY, 1992, 38 (128) :13-22
[10]   Climate variability and change in the Greater Alpine Region over the last two centuries based on multi-variable analysis [J].
Brunetti, Michele ;
Lentini, Gianluca ;
Maugeri, Maurizio ;
Nanni, Teresa ;
Auer, Ingeborg ;
Boehm, Reinhard ;
Schoener, Wolfgang .
INTERNATIONAL JOURNAL OF CLIMATOLOGY, 2009, 29 (15) :2197-2225