We estimate the strength of the lithosphere in Anatolia and the Aegean, and the boundary forces acting upon it, using a dynamical model that treats the lithosphere as a thin fluid sheet deforming in response to variations in gravitational potential energy. This model has one free material parameter, the power law exponent, n, of the vertically averaged rheology of the lithosphere, and two parameters that specify the forces per unit length applied to its edges. Solutions to this model that best fit the velocities of 346 reliable GPS sites require an effective viscosity of the lithosphere of 1022 to 1021 Pa s at strain rates of 10 to 100 nanostrain per year. The best-fitting force at the Arabia-Anatolia boundary is consistent with the lithost...
Variation of motion rates and stress redistribution in the Anatolian-Aegean region induced by the la...
The GPS-derived velocity field (1988-2005) for the zone of interaction of the Arabian, African (Nubi...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Earth, Atmospheric, and Planetary Sci...
International audienceWe estimate the strength of the lithosphere in Anatolia and the Aegean, and th...
We estimate the strength of the lithosphere in Anatolia and the Aegean, and the boundary forces acti...
We estimate the strength of the lithosphere in Anatolia and the Aegean, and the boundary forces acti...
International audienceWe estimate the strength of the lithosphere in Anatolia and the Aegean, and th...
International audienceWe estimate the strength of the lithosphere in Anatolia and the Aegean, and th...
We investigate the dynamics of deformation in the zone of convergence between the Arabian and Eurasi...
We investigate the dynamics of deformation in the zone of convergence between the Arabian and Eurasi...
We investigate the dynamics of deformation in the zone of convergence between the Arabian and Eurasi...
We investigate the dynamics of deformation in the zone of convergence between the Arabian and Eurasi...
Variation of motion rates and stress redistribution in the Anatolian-Aegean region induced by the la...
An edited version of this paper was published by AGU. Copyright (2010) American Geophysical Union.A ...
The results of previous studies in the Aegean have greatly influenced our understanding of continent...
Variation of motion rates and stress redistribution in the Anatolian-Aegean region induced by the la...
The GPS-derived velocity field (1988-2005) for the zone of interaction of the Arabian, African (Nubi...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Earth, Atmospheric, and Planetary Sci...
International audienceWe estimate the strength of the lithosphere in Anatolia and the Aegean, and th...
We estimate the strength of the lithosphere in Anatolia and the Aegean, and the boundary forces acti...
We estimate the strength of the lithosphere in Anatolia and the Aegean, and the boundary forces acti...
International audienceWe estimate the strength of the lithosphere in Anatolia and the Aegean, and th...
International audienceWe estimate the strength of the lithosphere in Anatolia and the Aegean, and th...
We investigate the dynamics of deformation in the zone of convergence between the Arabian and Eurasi...
We investigate the dynamics of deformation in the zone of convergence between the Arabian and Eurasi...
We investigate the dynamics of deformation in the zone of convergence between the Arabian and Eurasi...
We investigate the dynamics of deformation in the zone of convergence between the Arabian and Eurasi...
Variation of motion rates and stress redistribution in the Anatolian-Aegean region induced by the la...
An edited version of this paper was published by AGU. Copyright (2010) American Geophysical Union.A ...
The results of previous studies in the Aegean have greatly influenced our understanding of continent...
Variation of motion rates and stress redistribution in the Anatolian-Aegean region induced by the la...
The GPS-derived velocity field (1988-2005) for the zone of interaction of the Arabian, African (Nubi...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Earth, Atmospheric, and Planetary Sci...