HR: 0800h
AN: H51E-0824 [Abstracts]
TI: Floodplain Sedimentation from a 30-year Reccurrence Flood in 2005 on the Ping River, Northern Thailand
AU: * Wood, S H
EM: swood@boisestate.edu
AF: Department of Geosciences, Boise State University, Boise, ID 83725, United States
AU: Ziegler, A D
EM: ada@hawaii.edu
AF: Geography Department, University of Hawaii, Honolulu, HI 96822, United States
AB:
This study documents the nature of flood-producing storms and floodplain deposition associated with the
September 28-October 2, 2005 30-year-recurrence flood on the Ping River in northern Thailand. The primary
purpose of the study is to understand the extent that deposits from summer-monsoon floods can be identified in
floodplain stratigraphy A secondary objective is to document the sedimentation processes/patterns associated
with a large contemporary flood event on a medium-sized Asian river. Maximum sediment depths of 15 cm were
found on the river levee, within 30 m of the main channel, and at 350 m thickness was 4 cm. Sediment depth
generally decreased exponentially with distance away from the main channel. The extent of sediment deposition
was about 1 km from the river channel. However, 72/% of the sediment was deposited within an oval-shaped
area 200-400 m from the main channel and centered on a tributary stream, through which sediment-laden water
entered the floodplain, in addition to overtopping the levee of the main channel. Sediment concentration during
the flood was estimated at 800-1500 mg L-1; and we believe the sediment was delivered by flows of well-mixed
flood water occurring over a 1-2 day period. These data suggest that flood-deposited strata related to 30-year
recurrence floods is only likely to be preserved in deposits located relatively close to the main river channel where
fine sand and clayey coarse silt deposits have thicknesses of at least 5-10 cm. These relatively thick deposits
would survive bioturbation, whereas more distal areas with thin clayey silt deposits would not.
DE: 1861 Sedimentation (4863)
DE: 1862 Sediment transport (4558)
SC: Hydrology [H]
MN: 2007 Fall Meeting