HR: 0800h
AN: U41A-0803 [Abstracts]
TI: Changes in Synoptic Weather Patterns in the Arctic During the 21st Century
AU: * Cassano, J
EM: cassano@cires.colorado.edu
AF: CIRES / PAOS
University of Colorado, 216 UCB, Boulder, CO 80309
United States
AU: Uotila, P
EM: Petteri.Uotila@arts.monash.edu.au
AF: Monash University
School of Geography and Environmental Science, PO Box 11A, Clayton, VIC 3800
Australia
AU: Lynch, A
EM: Amanda.Lynch@arts.monash.edu.au
AF: Monash University
School of Geography and Environmental Science, PO Box 11A, Clayton, VIC 3800
Australia
AB:
An analysis of late 20th century and 21st century predictions of Arctic circulation patterns in a ten model ensemble of
global climate system models, using the method of self-organizing maps (SOMs), is presented. The model simulations were
conducted in support of the Intergovernmental Panel on Climate Change (IPCC) 4th Assessment Report. The analysis demonstrates
the utility of SOMs for climate analysis, both as a tool to evaluate the accuracy of climate model predictions, and to
provide a useful alternative view of future climate change.
It is found that not all models accurately simulate the frequency of occurrence of Arctic circulation patterns. Some of the
models tend to overpredict strong high pressure patterns while other models overpredict the intensity of cyclonic circulation
regimes. In general the ensemble of models predicts an increase in cyclonically dominated circulation patterns during both
the winter and summer seasons, with the largest changes occurring during the first half of the 21st century. Analysis of
temperature and precipitation anomalies associated with the different circulation patterns reveals coherent patterns that are
consistent with the different circulation regimes and highlight the dependence of local changes in these quantities to
changes in the synoptic scale circulation patterns.
DE: 1637 Regional climate change
DE: 1836 Hydrological cycles and budgets (1218, 1655)
DE: 3305 Climate change and variability (1616, 1635, 3309, 4215, 4513)
DE: 3337 Global climate models (1626, 4928)
DE: 3349 Polar meteorology
SC: Union [U]
MN: Fall Meeting 2005