HR: 11:44h
AN: A52A-07 [Abstracts]
TI: A Local Perspective on Climate
AU: * Hall, A
EM: alexhall@atmos.ucla.edu
AF: UCLA Dep't of Atmospheric and Oceanic Sciences, 405 Hilgard Ave, Box 951565, Los Angeles, CA 90095
United States
AU: Conil, S
EM: conil@atmos.ucla.edu
AF: UCLA Dep't of Atmospheric and Oceanic Sciences, 405 Hilgard Ave, Box 951565, Los Angeles, CA 90095
United States
AU: Hughes, M
EM: mhughes@atmos.ucla.edu
AF: UCLA Dep't of Atmospheric and Oceanic Sciences, 405 Hilgard Ave, Box 951565, Los Angeles, CA 90095
United States
AU: Masi, G
EM: gjm142@atmos.ucla.edu
AF: UCLA Dep't of Atmospheric and Oceanic Sciences, 405 Hilgard Ave, Box 951565, Los Angeles, CA 90095
United States
AU: Ghil, M
EM: ghil@atmos.ucla.edu
AF: UCLA Dep't of Atmospheric and Oceanic Sciences, 405 Hilgard Ave, Box 951565, Los Angeles, CA 90095
United States
AU: Fovell, R
EM: rfovell@ucla.edu
AF: UCLA Dep't of Atmospheric and Oceanic Sciences, 405 Hilgard Ave, Box 951565, Los Angeles, CA 90095
United States
AB:
We analyze the climatology of a 6 kilometer resolution, eight-year simulation of the atmosphere over the southern third of
California. We find that all climatologically-significant quantities exhibit large variations on spatial scales of tens of
kilometers. These include the amplitudes of the diurnal and seasonal cycles as well as mean precipitation and its
interannual variability. These small-scale variations are comparable in magnitude to those seen on spatial scales of
thousands of kilometers in the current generation of climate models and reanalysis products. We also elucidate the local
processes maintaining these small-scale variations. Finally, we identify the primary modes of circulation variability in the
region. We find three distinct modes, one corresponding to intense offshore flow (so-called "Santa Ana" events), and two
corresponding to vacillations of the climatological alongshore flow. Surprisingly, none of these modes exhibits any
correlation with any of the well-known large-scale modes of variability thought to influence the climate of the western
United States, such as the Pacific/North American teleconnection pattern. Taken together, our results indicate that local
processes play at least as large a role as large-scale processes in determining the climate of the region, including its mean
state and interannual variability. This, in turn, suggests local processes must be understood and taken into account in
assessing not only the impacts of anthropogenic climate change, but also the signatures of climate variability seen in
paleo-records.
UR: http://www.atmos.ucla.edu/csrl
DE: 3354 Precipitation (1854)
DE: 4215 Climate and interannual variability (3309)
DE: 1803 Anthropogenic effects
DE: 1630 Impact phenomena
DE: 1655 Water cycles (1836)
SC: Atmospheric Sciences [A]
MN: 2004 AGU Fall Meeting