HR: 15:00h
AN: A33B-05 [WITHDRAWN] [Abstracts]
TI: Influence of Sea-Surface Temperature on the Diurnal Cycle of the North American Monsoon System
AU: * Wang, W
EM: Wanqiu.Wang@noaa.gov
AF: NOAA Climate Prediction Center, 5200 Auth Road, RM605, Camp Springs, MD 20746,
United States
AU: Xie, P
EM: Pingping.Xie@noaa.gov
AF: NOAA Climate Prediction Center, 5200 Auth Road, RM605, Camp Springs, MD 20746,
United States
AU: Kousky, V
EM: Vernon.Kousky@noaa.gov
AF: NOAA Climate Prediction Center, 5200 Auth Road, RM605, Camp Springs, MD 20746,
United States
AU: Shi, W
EM: Wei.Shi@noaa.gov
AF: NOAA Climate Prediction Center, 5200 Auth Road, RM605, Camp Springs, MD 20746,
United States
AU: Higgins, W
EM: Wayne.Higgins@noaa.gov
AF: NOAA Climate Prediction Center, 5200 Auth Road, RM605, Camp Springs, MD 20746,
United States
AB:
The diurnal cycle of cloud and precipitation associated with the North American Monsoon System (NAMS) has
been examined using three-hourly data sets of geostationary IR of Janowiak et al. 2001), the CMORPH satellite
precipitation estimates of Joyce et al. (2004), and the Multi-Platform-Merged (MPM) SST analysis of Wang and Xie
(2007) for summer 2004. A comprehensive diagnostic study is performed to describe the temporal-spatial
structure of the mean state and diurnal cycle of the NAMS cloud/precipitation systems and their relationship to
SST over the adjacent oceanic areas. Our results are:
1) Variations of cloudiness and precipitation associated with the North American Monsoon System (NAMS) are
dominated by diurnal cycle;
2) Clouds and precipitation start from higher elevation in the morning, move toward the coast as they reach the
maximum in late afternoon;
3) The phase of the diurnal cycle is relatively stable, while the magnitude presents changes of synoptic and
intraseasonal time scales;
4) Maximum of deep convection and precipitation appears 50-100km west to the mountain crests, and,
5) The intensity of the NAMS convection is positively (negatively) correlated with that of the diurnal amplitude of
SSTs over the Gulf of Mexico (the Gulf of California).
Further work is underway to examine how the NAMS diurnal cycle and its relationship to SST are simulated by
NCEP operational climate forecast models.
DE: 3339 Ocean/atmosphere interactions (0312, 4504)
SC: Atmospheric Sciences [A]
MN: 2007 Joint Assembly