HR: 1340h
AN: B33B-1032 [Abstracts]
TI: Possible impacts of upper-tropospheric clouds and pollution on precipitation over Asia
AU: * Wu, D L
EM: Dong.L.Wu@jpl.nasa.gov
AF: Jet Propulsion Laboratory
California Institute of Technology, 4800 Oak Grove Drive, Pasadena, CA 91109
United States
AU: Jiang, J H
EM: Jonathan.H.Jiang@jpl.nasa.gov
AF: Jet Propulsion Laboratory
California Institute of Technology, 4800 Oak Grove Drive, Pasadena, CA 91109
United States
AB:
The subtropical anticyclone during Asian summer monsoon has great influences on distributions and variations of
upper-tropospheric clouds, water vapor, pollution, and precipitation in the region. Observations from EOS MLS (Earth
Observing System Microwave Limb Sounder) on NASA Aura satellite show that the anticyclone traps large amount of polluted air,
cloud ice and water vapor above the South Asia High (SAH) during August and September 2004. The amount of cloud ice and
water over SAH was built up slowly (over 20 days) in August but removed rapidly (within 10 days) in early September. This
slow buildup is possible if polluted air tends to delay precipitation by holding more cloud ice and water vapor in the upper
troposphere than clear air. The removal of a large amount of cloud ice in the upper troposphere, according to MLS
observations, is associated with the breakdown of the subtropical anticyclone and the SAH. GPCP data reveal heavy rainfalls
in south central China during the period when the upper-tropospheric clouds were reducing. Winds from the UK Met Office
analysis show strong updrafts in the heavy rainfall regions (e.g., south central China) while the anticyclone was weakening.
As the upper-tropospheric anticyclone moved eastward, the associated rainband drifted to the southwest, producing heavy
rainfalls and flooding in southern China and South Asia during 3-8 September 2004. Together, these observations suggest that
the removal of upper-tropospheric clouds and humidity is mostly carried out by the breakdown of the subtropical anticyclone.
Slowly accumulating and rapidly removing high clouds is likely to intensify the rainfalls in these polluted regions.
DE: 3310 Clouds and cloud feedbacks
DE: 3329 Mesoscale meteorology
DE: 3360 Remote sensing
SC: Biogeosciences [B]
MN: Fall Meeting 2005