HR: 1400h
AN: T43B-05 [Abstracts]
TI: Identifying tsunami deposits using shell taphonomy: Sur lagoon, Oman
AU: * Donato, S
EM: donatosv@mcmaster.ca
AF: McMaster University, School of Geography and Earth Sciences, McMaster University, 1280
Main Street West, Hamilton, ON L8S 4K1, Canada
AU: Reinhardt, E
EM: ereinhar@mcmaster.ca
AF: McMaster University, School of Geography and Earth Sciences, McMaster University, 1280
Main Street West, Hamilton, ON L8S 4K1, Canada
AU: Rothaus, R
EM:
AF: Saint Cloud State University, Saint Cloud State University, 720 Fourth Avenue South, Saint
Cloud, MN 56301-4498, United States
AU: Boyce, J
EM: boycej@mcmaster.ca
AF: McMaster University, School of Geography and Earth Sciences, McMaster University, 1280
Main Street West, Hamilton, ON L8S 4K1, Canada
AB:
On November 28th, 1945 an 8.1 magnitude earthquake focused in the eastern portion of the Makran subduction
zone (Arabian Sea) generated a powerful tsunami that destroyed many coastal villages in Pakistan and India.
Reports indicate that the tsunami also caused significant damage in Muscat, Oman, although its effects
elsewhere in Oman are unknown. A thick bivalve dominated shell horizon was discovered inside the Sur lagoon,
which is located on the eastern promontory of Oman (200 km south of Muscat). This shell deposit is significant
because it is laterally extensive (> 1 km2), extends deep within the lagoon (>2 km), ranges in thickness from
5 - 25 cm at the sample localities, contains numerous subtidal and offshore bivalve species, and articulated
subtidal and offshore bivalve species are abundant. Although there is an absence of typical tsunami indicators
such as allochthonous sediment in and around the lagoon, verbal accounts, cultural evidence recovered during
coring, and the absence of strong storms during the past 100 years indicates that this shell unit was caused by
the 1945 tsunami. In this setting, it would be advantageous to have another proxy for tsunami detection and risk
prediction. The use of shell taphonomy is one of the potential indicators and here we present new evidence of its
utility. We sampled this unit in eight locations, and compared the shell taphonomy to surface shell samples
collected from beach and reworked horizons in the lagoon, and to shell samples from a known tsunami and
corresponding storm/ballast deposit in Israel (Reinhardt et al., 2006). Taphonomic analysis yielded promising
results, as the two tsunami horizons shared excellent agreement between the amount of fragmented shells, and
the percentage of shells displaying angular breaks. Both of these categories were significantly different from the
percentage of fragments and angular fragments recovered from the reworked, beach, and storm/ballast deposits,
indicating different environmental factors acting upon the shell assemblages. These results suggest that
tsunamigenic shell deposits can be identified based on their taphonomic characteristics when compared to
beach and storm deposits in the same setting. Our data indicates that the following diagnostic taphonomic
characteristics may indicate a tsunamigenic deposit: 1) presence/absence of articulated bivalves, 2) increased
percentage of fragmented valves, 3) increased percentage of angular fragments, and 4) the large number of
offshore bivalves in the lagoon. This study highlights the potential benefits and opportunity for using bivalve
taphonomy as a useful indicator of paleotsunami deposits, particularly in protected coastal embayments in arid
regions where stratified deposits might not readily preserve. This technique holds potential, as shell deposits are
easy to identify in the field by non-experts, is very low cost, and analysis uses simple, easily applicable and
recognizable taphonomic characteristics. Furthermore, this proxy can be used for risk assessment purposes in
coastal areas with a seismic history but lacking a paleotsunami record. Further testing of this hypothesis should
be conducted along the Omani coastline, particularly in the lagoons along the Eastern promontory. Key Words:
tsunami, taphonomy, Oman, bivalve
DE: 4564 Tsunamis and storm surges
SC: Tectonophysics [T]
MN: 2007 Joint Assembly