The Response of Northern Hemisphere Snow Cover to a Changing Climate

被引:440
作者
Brown, Ross D. [1 ]
Mote, Philip W. [2 ]
机构
[1] Environm Canada Ouranos Inc, Div Climate Res, Montreal, PQ H3A 1B9, Canada
[2] Univ Washington, Climate Impacts Grp, CSES, JISAO, Seattle, WA 98195 USA
关键词
MOUNTAIN SNOWPACK; WATER EQUIVALENT; 2ND PHASE; VARIABILITY; TRENDS; DEPTH; MASS; SENSITIVITY; RETRIEVALS; DURATION;
D O I
10.1175/2008JCLI2665.1
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
A snowpack model sensitivity study, observed changes of snow cover in the NOAA satellite dataset, and snow cover simulations from the Coupled Model Intercomparison Project phase 3 (CMIP3) multimodel dataset are used to provide new insights into the climate response of Northern Hemisphere (NH) snow cover. Under conditions of warming and increasing precipitation that characterizes both observed and projected climate change over much of the NH land area with seasonal snow cover, the sensitivity analysis indicated snow cover duration (SCD) was the snow cover variable exhibiting the strongest climate sensitivity, with sensitivity varying with climate regime and elevation. The highest snow cover-climate sensitivity was found in maritime climates with extensive winter snowfall-for example, the coastal mountains of western North America (NA). Analysis of trends in snow cover duration during the 1966-2007 period of NOAA data showed the largest decreases were concentrated in a zone where seasonal mean air temperatures were in the range of -5 degrees to +5 degrees C that extended around the midlatitudinal coastal margins of the continents. These findings were echoed by the climate models that showed earlier and more widespread decreases in SCD than annual maximum snow water equivalent (SWEmax), with the zone of earliest significant decrease located over the maritime margins of NA and western Europe. The lowest SCD-climate sensitivity was observed in continental interior climates with relatively cold and dry winters, where precipitation plays a greater role in snow cover variability. The sensitivity analysis suggested a potentially complex elevation response of SCD and SWEmax to increasing temperature and precipitation in mountain regions as a result of nonlinear interactions between the duration of the snow season and snow accumulation rates.
引用
收藏
页码:2124 / 2145
页数:22
相关论文
共 95 条
[91]   Increases in snow season length due to earlier first snow and later last snow dates over North Central and Northwest Asia during 1937-94. [J].
Ye, HC .
GEOPHYSICAL RESEARCH LETTERS, 2001, 28 (03) :551-554
[92]  
Zhan XC, 2000, SPECTROSC SPECT ANAL, V20, P395
[93]  
[张国胜 Zhang Guosheng], 2006, [冰川冻土, Journal of Glaciology and Geocryology], V28, P678
[94]   Detection of human influence on twentieth-century precipitation trends [J].
Zhang, Xuebin ;
Zwiers, Francis W. ;
Hegerl, Gabriele C. ;
Lambert, F. Hugo ;
Gillett, Nathan P. ;
Solomon, Susan ;
Stott, Peter A. ;
Nozawa, Toru .
NATURE, 2007, 448 (7152) :461-U4
[95]   Reduction in Himalayan snow accumulation and weakening of the trade winds over the Pacific since the 1840s [J].
Zhao, Hongxu ;
Moore, G. W. K. .
GEOPHYSICAL RESEARCH LETTERS, 2006, 33 (17)