Solution of inverse problem of tectonic fault modeling from GPS data with allowance for the rheology of the medium

Author:

Molodensky M. S.

Publisher

Allerton Press

Reference22 articles.

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2. Barbot, S., Hamiel, Y., and Fialko, Y., Space geodetic investigation of the coseismic and postseismic deformation due to the 2003 M w 7.2 Altai earthquake: Implications for the local lithospheric rheology, J. Geophys. Res., 2008, no. 113. doi 10.1029/2007JB005063

3. Bernard, P. and Briole, P., The M s = 6.2, June 15, 1995 Aigion earthquake (Greece): Evidence for low angle normal faulting in the Corinth rift, J. Seismol., 1997, vol. 1, no. 2, pp. 131–150.

4. Crone, A.J., Personius, S.F., Craw, P.A., Haeussler, P.J., and Staft, L.A., The Susitna Glacier thrust fault-characteristics of ruptures that initiated the 2002 Denali fault earthquake, Bull. Seismol. Soc. Am., 2004, vol. 94, no. (6B), pp. 5–22.

5. Fialko, Y., Simons, M., and Agnew, D., The complete (3-D) surface displacement field in the epicentral area of the 1999 M w 7.1 Hector Mine earthquake, southern California, from space geodetic observations, Geophys. Res. Lett., 2001, no. 28, pp. 3063–3066.

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