HR: 1340h
AN: A53B-0887 [Abstracts]
TI: The Origins of Southern California's Climate Diversity
AU: * Hughes, M R
EM: mhughes@atmos.ucla.edu
AF: UCLA Department of Atmospheric and Oceanic Sciences, 405 Hilgard Ave
Box 951565
7127 Math Sciences Bldg, Los Angeles, Ca 90095
United States
AU: Hall, A
EM: alexhall@atmos.ucla.edu
AF: UCLA Department of Atmospheric and Oceanic Sciences, 405 Hilgard Ave
Box 951565
7127 Math Sciences Bldg, Los Angeles, Ca 90095
United States
AB:
The Penn State NCAR mesoscale model MM5, forced by the NCEP Eta model, was run at 6-kilometer resolution for nine years in
the Southern California region. The simulation exhibits significant spatial structure in both forced and unforced surface
air temperature (SAT) variability, and the goal of this study is to understand the reasons for this.
The SAT seasonal cycle amplitude is primarily determined by distance from the coast, and exhibits no elevation dependence.
In contrast, the diurnal cycle is strongly affected by elevation, with the highest elevations having a diurnal amplitude up
to three times smaller than low-lying areas. This effect occurs year round, but the magnitude is largest during summer
months, when the stability in this region is at its peak. The magnitude of unforced day-to-day variability is similarly
structured, with reduced variability at high elevations in the summer months. The winter day-to-day variability exhibits no
such dependence. We also discuss the physical mechanisms behind these spatial structures.
DE: 3322 Land/atmosphere interactions
DE: 3309 Climatology (1620)
SC: Atmospheric Sciences [A]
MN: 2004 AGU Fall Meeting