HR: 0800h
AN: T51D-1382 [Abstracts]
TI: Counter-Rotating Magellan and Trinidad Microplates at the Mesozoic Pacific-Phoenix-Farallon Triple
Junction
AU: * Schouten, H
EM: hschouten@whoi.edu
AF: Woods Hole Oceanographic Institution, Geology and Geophysics, Woods Hole, MA 02543
United States
AU: Smith, D K
EM: dsmith@whoi.edu
AF: Woods Hole Oceanographic Institution, Geology and Geophysics, Woods Hole, MA 02543
United States
AB:
Magellan and Trinidad microplates developed at the Mesozoic triple junction between the Pacific, Phoenix and Farallon plates;
the microplates were instrumental in the transition from a transform-ridge-transform to a ridge-ridge-ridge triple junction,
which took several tens of millions of years. Contrasting qualitative models for the evolution of these microplates [e.g.,
Tamaki and Larson, 1988; Nakanishi et al., 1992] provide meager insight in the mechanics of microplate evolution and triple
junction transformation. We propose a quantitative model for the evolution of Magellan and Trinidad microplates based on the
edge-driven microplate kinematic principles [Schouten et al., 1993] that have provided successful quantitative solutions for
the motions of Easter, Juan Fernandez, and Galapagos microplates. In these edge-driven solutions, two angular velocity
vectors (describing motion between microplate and driving plates) are located on the microplate boundaries at the tip of
rifts that propagate between microplate and driving plates. The rift propagation leaves pseudofaults on microplate and
driving plates; the pseudofaults, which can be recognized in the seafloor topography, then become proxies for the
trajectories of the angular velocity vectors from which a quantitative solution of microplate motion is derived. Using the
estimated seafloor topography of the region and published marine magnetic anomaly lineations we propose the following
scenario. The Magellan microplate rotated counterclockwise as evidenced by the fanning of magnetic lineations about the
Magellan Trough and the rotation of the older Mid-Pac Mountains lineation set. The Trinidad microplate rotated clockwise
relative to the Pacific plate to judge from the wedge-shaped region about the Trinidad trough that has its narrow tip on the
Victoria fracture zone (recognized in the estimated seafloor topograpy). The clockwise motion of the Trinidad microplate was
driven by Pacific-Phoenix motion; the counterclockwise motion of the Magellan microplate by Pacific-Farallon motion. Thus the
Magellan trough opened between the counter-rotating Trinidad and Magellan microplates, similar to the opening of Hess Deep
between two counter-rotating Galapagos microplates at the present Galapagos triple junction [Klein et al., 2005]. When the
northeastward propagating rift between the Trindad microplate and the Phoenix plate and the southward propagating rift
between the Magellan microplate and the Farallon plate broke through to the Phoenix-Farallon spreading center, a new
ridge-ridge-ridge triple junction was established between the Pacific, Phoenix and Farallon plates and the Trinidad and
Magellan microplates ceased rotating and were abandoned on the Pacific plate.
DE: 3040 Plate tectonics (8150, 8155, 8157, 8158)
DE: 3045 Seafloor morphology, geology, and geophysics
SC: Tectonophysics [T]
MN: Fall Meeting 2005