HR: 0800h
AN: A21C-0637 [Abstracts]
TI: Interaction of Environmental Moisture, Rainbands, and Inner-Core Dynamics in Hurricanes Katrina and Rita
AU: * Ortt, D
EM: dortt@rsmas.miami.edu
AF: University of Miami -- RSMAS, 4600 Ricnekbacker Causeway, Miami, FL 33149,
AU: Chen, S S
EM: schen@rsmas.miami.edu
AF: University of Miami -- RSMAS, 4600 Ricnekbacker Causeway, Miami, FL 33149,
AB:
The interaction of the environmental water vapor distribution around a tropical cyclone (TC), rainbands, and inner-
core dynamics can affect hurricane structure and intensity change, which is not well understood. Although
previous studies have addressed various aspects of this problem, a full three way interaction and its implications
for hurricane intensity change has not been documented. Using data collected during the Hurricane Rainband
and Intensity Experiment (RAINEX) in Hurricanes Katrina and Rita, the three way interaction of the environment
moisture, rainbands, and inner-core dynamics can be evaluated. The TRMM TMI total precipitable water (PW) data
with 1/4 degree horizontal resolution, TRMM TMI rainrate data with a 4 km horizontal resolution and the GPS
dropsondes with a ½ second temporal resolution are used to characterize the environmental moisture. The high
resolution model output from the real-time MM5 forecasts of Hurricanes Katrina and Rita are used to investigate
the complex interactions in both storms. The model forecasts were made using a vortex-following nested grid
with horizontal resolutions of 15, 5, and 1.67km, respectively. There were 28 vertical sigma levels. The Goddard
microphysics scheme was used. The TRMM PW and the GPS dropsonde data show strong moisture gradients
in the outer rainband region in Rita with a dry outer environment, which may contribute to the development of outer
rainbands with a high circularity. It created a secondary ring of potential vorticity (PV). In addition, the vortex
Rossby waves (VRW) propagating radialy outward from the eyewall were unable to propagate beyond the
secondary ring of PV. The combination of these VRW and the environmental water vapor distribution may play a
role in enhancing the rainbands that developed into a secondary eyewall, which leads to a temporary weakening
of the hurricane. In contrast, Katrina had a relative weak moisture gradient surrounding the storm. There were not
persistent outer rainbands with high circularity, which may explain the different evolution in Katrina compared with
Rita.
DE: 3374 Tropical meteorology
SC: Atmospheric Sciences [A]
MN: 2007 Fall Meeting