HR: 1340h
AN: H43E-0532 [Abstracts]
TI: Synoptic Analysis of 2000-2005 Significant Snowfall Events on Mt. Kilimanjaro
AU: * Chan, R Y
EM: rchan731@yahoo.com
AF: University of Massachusetts, Amherst, 5 Corcoran Street, Randolph, MA 02368
United States
AU: Ammann, C M
EM: ammann@ucar.edu
AF: National Center for Atmospheric Research, P.O.Box 3000, Boulder, CO 80307
United States
AU: Yin, J H
EM: jyin@ucar.edu
AF: National Center for Atmospheric Research, P.O.Box 3000, Boulder, CO 80307
United States
AB:
Ice cores recovered from Mt. Kilimanjaro provide evidence of significant climate changes in the East African region over the
past 10,000 years. However, the atmospheric processes that lead to snowfall on Kilimanjaro are poorly understood. Earlier
studies have suggested that East African climate is dominated by the seasonal shift of the tropical precipitation bands, yet
the key factors causing interannual precipitation variability remain unclear, particularly for the long rains season
(March-May). To advance the understanding of modern East African climate, this study used data from a new station on top of
Mt. Kilimanjaro and put them into a regional atmospheric circulation context. First, the in situ data were compared to global
analysis products for testing their representation of the East African region. Overall, these data showed similar activity
during corresponding days of snowfall on Kilimanjaro, indicating that snowfall events are likely related to regional
precipitation. Second, the use of various global (re-) analysis products allowed the examination of commonalities between
individual precipitation events on Kilimanjaro, and helped to identify the key precipitation-causing processes. Results
showed distinct seasonality in precipitation, propagating from west to east during the long rains and east to west during the
short rains (October-December). In addition, high magnitude snowfall events occurred under the conditions of low wind speed
and high humidity. Therefore, high magnitude events may be a result of local convection, and these events may represent
certain atmospheric conditions favorable for snowfall accumulation, but their representation of overall regional rainfall
totals remains uncertain.
DE: 0429 Climate dynamics (1620)
DE: 1616 Climate variability (1635, 3305, 3309, 4215, 4513)
DE: 3364 Synoptic-scale meteorology
DE: 4904 Atmospheric transport and circulation
SC: Hydrology [H]
MN: Fall Meeting 2005