HR: 0800h
AN: C11A-1065 [Abstracts]
TI: Occurrences of Intrapermafrost Gas Hydrates and Shallow Gas in the Mackenzie Delta area, N.W.T.,
Canada
AU: * Dallimore, S R
EM: sdallimore@nrcan.gc.ca
AF: Geological Survey of Canada, P.O. Box 6000, Sidney, BC V8L 4B2
Canada
AU: Wright, J F
EM: fwright@nrcan.gc.ca
AF: Geological Survey of Canada, P.O. Box 6000, Sidney, BC V8L 4B2
Canada
AU: Collett, T S
EM: tcollett@usgs.gov
AF: U.S. Geological Survey, P.O. Box 25046, MS-939, Denver, CO 80225
United States
AU: Schmitt, D
EM: doug@phys.ualberta.ca
AF: University of Alberta, Avadh Bhatia Physics Laboratory, Room 547, Edmonton, AB T6G 2J1
Canada
AB:
The thickness of permafrost (i.e. depth of the 0°C isotherm) in the Mackenzie Delta area, and the associated deep
geothermal regime have been strongly influenced by ground surface temperature history during the past several million years.
Important considerations include periods of glacial ice cover, duration of post-glacial terrestrial exposure and periods of
marine incursions, all of which are known to vary considerably at both regional and local scales. Perhaps more than any area
in the world, permafrost conditions are highly variable spatially, with areas having less than 50m of permafrost in close
proximity to terrain having in excess of 700m of permafrost. Assuming normal pressure conditions, Structure I methane hydrate
can be expected to be stable in locations where permafrost is greater than 250m in thickness. Conditions for the occurrence
of intrapermafrost gas hydrate (gas hydrate within the permafrost interval) are therefore widespread throughout much of the
coastal and offshore areas of the Beaufort Sea. Current research issues include the sensitivity of intrapermafrost gas
hydrates to climate warming and their potential as a geohazard during exploration drilling and hydrocarbon production. This
paper will review the intrapermafrost and sub-permafrost gas hydrate regime as well as the occurrence of shallow free gas
within the gas hydrate pressure-temperature stability field. Evidence for the occurrence of intrapermafrost gas hydrate has
been documented in laboratory tests of core samples recovered from a research well at the Taglu field and inferred from
surface geophysical surveys, well log assessments, and anomalous gas shows during exploration drilling. Finally, data from
constrained laboratory experiments will document the unique behavior of gas hydrate within sediment-gas hydrate-liquid
water/ice systems.
DE: 1810 Debris flow and landslides
DE: 1823 Frozen ground
DE: 4540 Ice mechanics and air/sea/ice exchange processes (0700, 0750, 0752, 0754)
SC: Cryosphere [C]
MN: Fall Meeting 2005