HR: 10:55h
AN: T21E-03 [PDF]
TI: The Tectonic Evolution of the Tj\"{o}rnes Fracture Zone, offshore Northern Iceland - Ridge Jumps and
Rift Propagation
AU: * Detrick, R S
EM: rdetrick@whoi.edu
AF: Woods Hole Oceanographic Inst., 360 Woods Hole Rd, Woods Hole, MA 02543 United States
AU: Brandsd\'{o}ttir, B
EM: bryndis@raunvis.hi.is
AF: Science Institute, Univ. of Iceland, Hagi, Hofsvallagata 53, Reykjav\'{\i}k, 107
Iceland
AU: Driscoll, N
EM: ndriscoll@ucsd.edu
AF: Scripps Inst. of Oceanography, Univ. of California, San Diego, La Jolla, CA 92037 United States
AU: Richter, B
EM: br@isor.is
AF: Iceland GeoSurvey, Grensasvegur 9, Reykjav\'{\i}k, 107
Iceland
AU: Mayer, L
EM: larry.mayer@unh.edu
AF: CCOM, Univ. of New Hamphshire, Durham, NH 03824 United States
AU: Fornari, D
EM: dfornari@whoi.edu
AF: Woods Hole Oceanographic Inst., 360 Woods Hole Rd, Woods Hole, MA 02543 United States
AU: Calder, B
EM: brc@ccom.unh.edu
AF: CCOM, Univ. of New Hamphshire, Durham, NH 03824 United States
AU: Kent, G
EM: gkent@igpp.ucsd.edu
AF: Scripps Inst. of Oceanography, Univ. of California, San Diego, La Jolla, CA 92037 United States
AB:
The Tj\"{o}rnes Fracture Zone (TFZ) links the rift zones in northern Iceland with the Kolbeinsey Ridge north of Iceland. The
TFZ was initiated during the Miocene (7-9 Ma), following an eastward jump of the spreading axis in northern Iceland. A
roughly 150 km long (EW) and 50 km wide (NS) deformation zone has since developed which includes both right-lateral,
strike-slip faults and three N-S trending extensional grabens (from west to east the Eyjafj\"{o}rdur, Skj\'{a}lfandi and
\"{O}xarfj"{o}rdur basins) which are filled with a 0.5-4 km thick sedimentary sequence. There are two WNW-striking bands of
seismicity in the TFZ, a northern band known as the Gr\'{\i}msey lineament and a southern band associated with the
WNW-trending H\'{u}sav\'{\i}k-Flatey fault (HFF). Over the past three field seasons we have mapped a large portion of TFZ
utilizing multibeam echo sounders (both EM300 and a Reson 8101 shallow water system), collected high-resolution multichannel
seismics and Chirp sonar, and obtained bottom photographs. The HFF can be traced offshore from H\'{u}sav\'{\i}k village
across Skj\'{a}lfandi Bay as two WNW-trending, south-facing fault scarps and northwest of Flatey Island into the southern
Eyjafj\"{o}rdur basin as a WNW-trending, north-facing scarp. In Skj\'{a}lfandi Bay several smaller WNW-trending faults are
located sub-parallel of the main HFF. Offshore Flateyjarskagi, west of Flatey Island, a zone of intense deformation has been
mapped, including clear evidence of right-lateral strike-slip faulting. The sediment-filled basins north of the HFF are
bounded by numerous NS-trending faults, some of which extend to the seafloor, suggesting they are actively extending. The
very subtle expression of the HFF in eastern Skj\'{a}lfandi Bay, and the more prominent but simple expression of recent
(post-glacial) faulting along the western HFF near Flatey Island are consistent with historical and recent seismicity which
is concentrated on the H\'{u}sav\'{\i}k fault system on the Tj\"{o}rnes peninsula, along the western HFF and in the southern
Eyjafj\"{o}rdur, basin. A GPS geodetic station on the Tj\"{o}rnes peninsula, northeast of the HFF, maintained by the
Iceland Meteorological Service shows that over the past 2 years the southern TFZ has been moving with the North American
plate suggesting that little strain accommodation is currently occurring along the main HFF. These observations are
consistent with a model for the tectonic evolution of the TFZ in which the continued northward propagation of the northern
rift zone in Iceland has progressively shifted relative motion between the North American and Eurasian plates northward to
the series of NNE-SSW trending rift zones along the Gr\'{\i}msey seismic lineation.
DE: 7220 Oceanic crust
DE: 7230 Seismicity and seismotectonics
DE: 8123 Dynamics, seismotectonics
DE: 8150 Plate boundary--general (3040)
SC: Tectonophysics [T]
MN: 2003 Fall Meeting