HR: 0800h
AN: G21C-0670 [Abstracts]
TI: Modeling the Philippine Mobile Belt: Tectonic blocks in a deforming plate boundary zone
AU: * Galgana, G A
EM: ggalgana@indiana.edu
AF: Dept. of Geological Sciences, Indiana University, 1001 E. 10th St., Bloomington, IN 47405,
United States
AU: Hamburger, M W
EM: hamburg@indiana.edu
AF: Dept. of Geological Sciences, Indiana University, 1001 E. 10th St., Bloomington, IN 47405,
United States
AU: McCaffrey, R
EM: R.McCaffrey@gns.cri.nz
AF: GNS Science, 1 Fairway Drive, Avalon, Lower Hutt, 5010, New Zealand
AU: Bacolcol, T C
EM: tbacolcol@yahoo.com
AF: Philippine Institute of Volcanology and Seismology, CP Garcia Avenue, Diliman, Quezon
City, MM 1101, Philippines
AU: Aurelio, M A
EM: marioa@info.com.ph
AF: Mines and Geosciences Bureau, North Avenue, Diliman, Quezon City, 1101, Philippines
AB:
The Philippine Mobile Belt, a seismically active, rapidly deforming plate boundary zone situated along the
convergent Philippine Sea/Eurasian plate boundary, is examined using geodetic and seismological data. Oblique
convergence between the Philippine Sea Plate and the Eurasian plate is accommodated by nearly orthogonal
subduction along the Philippine Trench and the Manila Trench, as well as by strike-slip faulting along the
Philippine Fault system. We develop a model of active plate boundary deformation in this region, using elastic
block models constrained by known fault geometries, published GPS observations and focal mechanism
solutions. We then present an estimate of block rotations, fault coupling, and intra-block deformation, based on
the best-fit model that minimizes the misfit between observed and predicted geodetic vectors and earthquake slip
vectors. Slip rates along the Philippine fault vary from ~22 - 36 mm/yr in the Central Visayas and about 10 to 40
mm/yr in Luzon, trending almost parallel to the fault trace. In northern Luzon, Philippine Fault splays
accommodate transpressional strain. The Central Visayas block experiences convergence with the Sundaland
block along the Negros Trench and the Mindoro-Palawan collision zone. On the eastern side of Central Visayas,
sinistral strike-slip faulting occurs along the NNW-SSE-trending Philippine Fault. Mindanao Island in southern
Philippines is dominated by east-verging subduction along the Cotabato Trench, and strain partitioning (strike-
slip faulting with west-verging subduction) in eastern Mindanao along the southern Philippine Fault and
Philippine Trench, respectively. Oblique active sinistral strike slip faults in Central and Eastern Mindanao that
were hypothesized to be responsible for basin formation are obvious boundaries for tectonic blocks. Located
south of Mindanao Island we define an adjoining oceanic block defined by the N-S trending complex dual
subduction zone of Sangihe and Halmahera, primarily delineated by seismicity, bathymetric profiles and E-W
thrust mechanisms. In our preferred model, the Philippine Mobile Belt can be represented by at least 12
independently moving rigid tectonic blocks, separated by active faults and subduction zones.
DE: 1209 Tectonic deformation (6924)
DE: 1243 Space geodetic surveys
DE: 8123 Dynamics: seismotectonics
DE: 8158 Plate motions: present and recent (3040)
DE: 8185 Volcanic arcs
SC: Geodesy [G]
MN: 2007 Fall Meeting