HR: 1340h
AN: GC23A-0973 [Abstracts]
TI: Changes in Snow Cover Characteristics Over the Russian Territory in Recent Decades
AU: * Bulygina, O N
EM: bulygina@meteo.ru
AF: All-Russian Research Institute of Hydrometeorological Information - World Data Center, 6 Koroleva Street, Obninsk, 249035, Russian Federation
AU: Razuvaev, V N
EM: razuvaev@meteo.ru
AF: All-Russian Research Institute of Hydrometeorological Information - World Data Center, 6 Koroleva Street, Obninsk, 249035, Russian Federation
AU: Groisman, P Y
EM: pasha.groisman@noaa.gov
AF: University Corporation for Atmospheric Research, NCDC, Federal Building, 151 Patton
Avenue, Asheville, NC 28801, United States
AB:
The state of snow cover is one of the most important characteristics of the Northern Eurasia climate. The present
work sheds light on the snow variations by using empirical and statistical analysis of time series of daily snow
depth over Russia. For 400 Russian stations, time series of the daily snow depth and of the extent to which the
near-station territory is covered by snow have been prepared in RIHMI-WDC for the period 1951-2006. Our
analyses revealed the following regional features in the change of snow cover characteristics. Increases in
winter precipitation and surface air temperature affected the variability of snow characteristics. In particular,
tendencies towards the increase in the average snow depth over the Russian territory are prevailing, while only a
few Russian regions show a decrease in winter snow depth. The largest variations in the average snow depth
occur in the late winter - early spring period. In the recent three decades a substantial part of the Russian territory
exhibits a shorter snow-cover period. The regionally-averaged snow cover characteristics were analyzed across
the seven quasi-homogeneous climatic regions of Russia as well as for the entire nation. In the European part of
Russia and in the Russian Far East, the increase in the average snow depth is controlled by winter and autumn
precipitation growth. Time series of the number of days with different snow depths have been derived from daily
snow depth observations. In the past decades, the number of days with the snow depth above 1 cm tends to
decrease in the west of European Russia, in the Urals, Siberia and the Chukotka Peninsula (i.e., over most of
Russia), while the number of days with significant snow depth (above 20 cm) tends to increase slightly. Taking
into account that the Russian territory dominates the snow-covered areas of Eurasia, we conclude that across
most of Northern Eurasia the snowy season became shorter but more “intense”.
DE: 0736 Snow (1827, 1863)
DE: 1616 Climate variability (1635, 3305, 3309, 4215, 4513)
DE: 1621 Cryospheric change (0776)
SC: Global Environmental Change [GC]
MN: 2007 Fall Meeting