English

Block Motion Changes in Japan Triggered by the 2011 Great Tohoku Earthquake

Geophysics 2018-03-14 v1

Abstract

Plate motions are governed by equilibrium between basal and edge forces. Great earthquakes may induce differential static stress changes across tectonic plates, enabling a new equilibrium state. Here we consider the torque balance for idealized circular plates and find a simple scalar relationship for changes in relative plate speed as a function of its size, upper mantle viscosity, and coseismic stress changes. Applied to Japan, the 2011 MW=9.0\mathrm{M}_{\mathrm{W}}=9.0 Tohoku earthquake generated coseismic stresses of 10210510^2-10^5~Pa that could have induced changes in motion of small (radius 100\sim100~km) crustal blocks within Honshu. Analysis of time-dependent GPS velocities, with corrections for earthquake cycle effects, reveals that plate speeds may have changed by up to 3\sim3 mm/yr between 3.75\sim3.75-year epochs bracketing this earthquake, consistent with an upper mantle viscosity of 5×1018\sim 5\times10^{18}Pa\cdots, suggesting that great earthquakes may modulate motions of proximal crustal blocks at frequencies as high as 10810^-8~Hz.

Keywords

Cite

@article{arxiv.1704.06618,
  title  = {Block Motion Changes in Japan Triggered by the 2011 Great Tohoku Earthquake},
  author = {Brendan J. Meade and John P. Loveless},
  journal= {arXiv preprint arXiv:1704.06618},
  year   = {2018}
}