HR: 15:10h
AN: PP53A-07 [Abstracts]
TI: Enhanced Multidecadal Variability in the 17th Century From a Comparison of Coral Isotope Records in the
Western Tropical Indian Ocean
AU: * Cole, J E
EM: jcole@geo.arizona.edu
AF: Depatment of Geosciences, University of Arizona, Tucson, AZ 85721
United States
AU: * Cole, J E
EM: jcole@geo.arizona.edu
AF: Department of Atmospheric Sciences, University of Arizona, Tucson, AZ 85721
United States
AU: Damassa, T D
EM: tdamassa@geo.arizona.edu
AF: Depatment of Geosciences, University of Arizona, Tucson, AZ 85721
United States
AU: Barnett, H R
EM: hbarnett@geo.arizona.edu
AF: Depatment of Geosciences, University of Arizona, Tucson, AZ 85721
United States
AU: Ault, T R
EM: tault@geo.arizona.edu
AF: Depatment of Geosciences, University of Arizona, Tucson, AZ 85721
United States
AU: McClanahan, T R
EM: tmcclanahan@wcs.org
AF: Wildlife Conservation Society - Marine Programs, PO Box 99740, Mombasa, AZ none
Kenya
AB:
Decadal climate variability in the tropical Indo-Pacific is becoming clearly recognized from paleoclimatic and instrumental
data, but its spatiotemporal signature remains poorly characterized. Here we use new stable isotope records from the
slow-growing coral Diploastrea heliopora to describe substantial changes in the dominant frequencies of climate
variability in the western tropical Indian Ocean between the 20th and the 17th centuries. Sampling methodology tests reveal
isotopic offsets within skeletal elements of this species, which were avoided by sampling exclusively in the columella. The
modern record demonstrates coherency with relevant instrumental and proxy time series, supporting its use in reconstructing
past climate. However, the 20th century record appears to lose fidelity in the most recent decades, likely a result of
multiple environmental stresses at this site. We observe sea surface temperature warming over much of the 20th century and
significant power at ENSO periodicities. The 17th-century record, in contrast, lacks any trend, exhibits interannual variance
slightly weaker than modern, and contains a pronounced interdecadal signal not evident in the 20th century. The 17th-century
multidecadal signal correlates with other large-scale indices of climate variability, including reconstructions of ENSO,
Pacific decadal variability and northern hemisphere temperature. We infer a large-scale mode of multidecadal variance that
explicitly includes the tropical oceans, perhaps analogous to a stronger version of today's IPO/PDO. The 17th and 20th
centuries represent times of markedly different solar irradiance. We find no clear evidence of solar irradiance influence on
interannual (ENSO) variability across the tropical Indo-Pacific during these intervals. These results highlight the
substantial natural variability in dominant modes of tropical variability and the significant power that resides in
multidecadal periods of tropical ocean variability, particularly before the 20th century.
DE: 4916 Corals (4220)
DE: 4922 El Nino (4522)
DE: 4954 Sea surface temperature
DE: 9340 Indian Ocean
SC: Paleoceanography and Paleoclimatology [PP]
MN: Fall Meeting 2005