HR: 1340h
AN: T33A-0511 [Abstracts]
TI: Latest Results of formation Pressure Monitoring Using CORKs Penetrating Upper Basement on the Eastern
Flank of the Juan de Fuca Ridge
AU: * Becker, K
EM: kbecker@rsmas.miami.edu
AF: University of Miami - RSMAS, 4600 Rickenbacker Causeway, Miami, FL 33149
United States
AU: Davis, E E
EM: EDavis@NRCan.gc.ca.
AF: Pacific Geoscience Centre, Geological Survey of Canada, Box 6000, Sidney, BC V8L 4B2
Canada
AU: Fisher, A T
EM: afisher@es.ucsc.edu
AF: Institute for Geophysics and Planetary Physics, University of California, Santa Cruz, Santa Cruz, CA
95064
United States
AB:
We will report latest results obtained during September 2005 submersible operations at six subseafloor ODP/IODP
hydrogeological observatories ("CORKs") on the eastern flank of the Endeavour Segment, Juan de Fuca Ridge. These
installations include three original CORKs with long-term basement pressure monitoring, installed during ODP Leg 168 in 1996
on an age transect: Holes1024C in 0.9 Ma crust, 1025C (1.3 Ma) and 1027C (3.4 Ma). They also include three newer multi-level
models installed during the first IODP expedition in 2004 in a detailed spatial array above a sediment-buried basement ridge
within ~2km from 1027C: 1026B, 1301A and 1301B, with the last two being ~30 m apart ~1km south of 1026B. Previous results
with an original CORK in Hole 1026B indicate that uppermost basement in the buried basement are overpressured by ~20 MPa, and
the hole can produce formation fluids at ~62circC. This compares to an underpressure of about 25 kPa in Hole 1027C,
located off the basement ridge beneath a thicker sediment cover. The new installations in Holes 1301A and B penetrate deeper
into basement than 1026B, allowing in Hole 1301B isolation of intervals to 300 m into basement. Thus the array of holes has
the potential to document lateral variations in basement pressures plus the vertical variation at 1301B. Previous results
from the 1024C-1027C transect have documented in-situ pressures, an apparent age-dependence on large-scale formation
permeability, and formation pressure responses to transients ranging from periodic tidal loading to plate strain events.
Sampling rates were increased at these installations in 2003, so the new data should be even more diagnostic of formation
responses to such transients.
DE: 1895 Instruments and techniques: monitoring
DE: 3021 Marine hydrogeology
DE: 3036 Ocean drilling
DE: 3050 Ocean observatories and experiments
DE: 3094 Instruments and techniques
SC: Tectonophysics [T]
MN: Fall Meeting 2005