Swiss ski resorts could see 70% drop in snow cover as climate warms
Skiers heading to the slopes of the Swiss Alps could find the ski season increasingly curtailed by a lack of snow, a new study says.The research, published in The Cryosphere, suggests that the pristine white pistes of Switzerland could see an average 70% reduction in the depth of snow cover by the end of the century if greenhouse gas emissions aren’t curbed. For ski resorts at lower elevations, this might mean no snow at all.However, declines in snow depth could be limited to 30% if global temperature rise is kept to no more than 2C above pre-industrial levels, the researchers say.§ Snow depth
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2.2-4.9CA1B2.5-5.9CA2thicknessGlossary
RCP2.6: The RCPs (Representative Concentration Pathways) are scenarios of future concentrations of greenhouse gases. RCP2.6 is a “peak and decline” scenario where stringent mitigation and negative emissions technologies mean carbon emissions peak and then fall during this century. In RCP2.6, global temperature rise is limited to 2C above pre-industrial levels, and atmospheric CO2 by 2100 sits at 490 parts per million (ppm) – only around 90ppm higher than it is now.
RCP2.6: The RCPs (Representative Concentration Pathways) are scenarios of future concentrations of greenhouse gases. RCP2.6 is a “peak and decline” scenario where stringent mitigation and negative emissions technologies mean carbon emissions peak and… Read More
§ Elevation
“The most affected elevation zone for climate change is located below 1200m, where the simulations show almost no snow towards the end of the century.”
a quarter§ Drop in income
In the early months of the 2016-17 ski season, for example, the number of people using ski lifts (an indicator of number of skiers) in Swiss resorts fell by an average of 13%.“Skiing on natural snow will be more and more limited to a shorter season or higher elevations. The efficient production of technical snow will get even more important than today.”
Article information
Marty, C. et al. (2017) How much can we save? Impact of different emission scenarios on future snow cover in the Alps, The Cryosphere, doi:10.5194/tc-11-517-2017