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NASA Researchers Studying
Tropical Cyclones
As scientists and coastal
residents brace for another
potentially challenging
hurricane season, NASA is
launching the Tropical Cloud
Systems and Processes (TCSP)
mission. TCSP is a month-long
research effort primarily
intended to document "cyclogenesis,"
the birth of tropical storms,
hurricanes and related
phenomena.
Researchers will monitor oceanic
thunderstorms to study why some
systems develop into tropical
cyclones and some do not.
Researchers feel the data is
vital to understanding how such
weather systems evolve and
travel. The data also could
support development of a more
accurate and timely warning
system to help safeguard
property and lives.
A team of atmospheric
scientists, engineers and
aircraft personnel will take up
residence in San José, Costa
Rica during July.
The NASA team will work with the
National Oceanic and Atmospheric
Administration (NOAA) and Costa
Rican Centro Nacional de Alta
Tecnologia (CENAT). The team
will conduct ground-based and
airborne studies to measure the
buildup and behavior of tropical
storm systems on Costa Rica's
east and west coasts.
Missions will be flown over the
region using NASA's ER-2 and
NOAA's WP-3D Orion aircraft and
with unmanned aerial vehicles (aerosondes).
The unmanned flights will be
managed in conjunction with the
University of Colorado at
Boulder. The airborne
experiments will collect
temperature, humidity,
precipitation, and wind
information related to tropical
cyclones and other phenomena
that often lead to development
of more powerful storms at sea.
The field operations will also
take advantage of several NASA
and NOAA satellites.
NASA and Costa Rica's Instituto
Meteorologico Nacional (IMN)
will launch a series of RS-92
series, balloon-borne probes (sondes),
to measure humidity and other
data related to tropical storm
origins.
"Costa Rica is an ideal location
for this research," said Dr.
Ramesh Kakar, Weather Focus Area
leader for NASA's Science
Mission Directorate. A vast
number of tropical storms and
hurricanes impacting the eastern
Pacific are spawned near the
small Central American nation's
western coast.
"In the Atlantic, cyclogenesis
often occurs off the western
coast of Africa, or sufficiently
far out over the ocean that
long-duration science flights
are extremely difficult," Kakar
said. "In the eastern Pacific
near Costa Rica, however, it is
possible to study the genesis
process from formation of the
initial disturbance until, in
some cases, it grows into a
hurricane over a more compact
geographical region."
Researchers also will be able to
take advantage of their
proximity to the Caribbean and
the western Gulf of Mexico,
studying tropical systems off
Costa Rica's eastern shores
during more mature phases of
development.
"This experiment is significant
for two reasons," said Robbie
Hood, an atmospheric scientist
at the Marshall Space Flight
Center, Huntsville, Ala. She is
one of three lead scientists for
the project in Costa Rica. "We
will have an opportunity to take
a closer look at the factors
contributing to the initiation
and intensification of tropical
cyclones which are still
somewhat mysterious processes
for researchers and operational
forecasters. We will also be
examining what are the best
combinations of satellite and
aircraft technologies to improve
how hurricanes are monitored and
predicted," she said.
"Building on a quarter century
of ever improving spaceborne
observations of the Earth, we
are entering an exciting new
era. It will be using
information collected by
satellites and uninhabited
aerial vehicles to the best
advantage for improved weather
prediction and other societal
benefits," Hood said.
The new study continues NASA's
successful Convection and
Moisture Experiment (CAMEX)
research series, conducted from
1998 to 2001 with NOAA. TCSP
participants include NOAA's
Hurricane Research Division,
five NASA centers, 10 American
universities and partner
agencies in Costa Rica.
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