HR: 1340h
AN: GC13A-0942 [Abstracts]
TI: Geothermics of Climate Change: Linking Ground and Air Temperature Change Through Repeat Temperature Measurements in Boreholes From Northwest Utah
AU: * Davis, M G
EM: davis@earth.utah.edu
AF: Department of Geology and Geophysics, University of Utah, Salt Lake City, UT 84112,
United States
AU: Harris, R N
EM: rharris@coas.oregonstate.edu
AF: College of Oceanic and Atmospheric Sciences, Oregon State University, Corvallis, OR
97331, United States
AU: Chapman, D S
EM: chapman@earth.utah.edu
AF: Department of Geology and Geophysics, University of Utah, Salt Lake City, UT 84112,
United States
AB:
Temperature-depth profiles measured in boreholes contain important information about the Earth's changing
surface temperature and provide a direct method for reconstructing surface temperature variations over the past
several centuries. Differences between temperature-depth logs, on annual to decadal timescales, provide an
important test of borehole thermometry. Twelve temperature-depth logs at the northwestern Utah Emigrant Pass
Observatory (EPO) borehole, GC-1, seven at borehole SI-1 and five at borehole DM-1, were acquired between the
years 1978 and 2007. Differences in temperature logs extend to about 100 m. Below 100 m, differences
between temperature logs are effectively zero. SAT data from the meteorological station at EPO and nearby
Historical Climatology Network stations are used as a forcing function at the Earth's surface and diffused into the
subsurface. These transients reproduce observed subsurface temperature variations reasonably well at each
borehole. Comparisons between repeated temperature-depth profiles and diffused SAT transients over the
same time period offer strong support for using GST histories to complement SAT data and multi-proxy
reconstructions in climate change studies.
DE: 1631 Land/atmosphere interactions (1218, 1843, 3322)
DE: 1645 Solid Earth (1225)
SC: Global Environmental Change [GC]
MN: 2007 Fall Meeting