A.L. Sobisevich, G.M. Steblov, A.A. Sentsov, E.V. Deev, L.V. Eppelbaum, A.O. Agibalov, I.M. Aleshin, G.R. Balashov, O.T. Kamenev, A.N. Kotov, V.M. Makeev, V.P. Perederin, F.V. Perederin, N.K. Rosenberg, K.I. Kholodkov, O.V. Safronov
Issue: 8
, Уear of publication: 2025
Serial edition: Natural Hazards
Pages: 1-25
Abstract
The usefulness of identifying seismically active zones in the Altai-Sayan region has been demonstrated through the analysis of anomalies in three morphometric terrain parameters (depth of vertical dissection, average height, and difference between second-order and third-order base level surfaces), processed using fuzzy logic tools. According to GNSS data and earthquake focal mechanisms, active faults strike-slip tectonic settings, where the major compression axis strikes northeast. Computer simulations have shown that this process leads to the accumulation of extensional horizontal stress in zones occupying approximately 50% of the investigated area, where 72% of all earthquake epicenters are localized and 83% of those have a moment magnitude of 5.5 or greater. The results of the morphometric terrain analysis and computer simulation enabled the delineation of 13 potential earthquake source zones with moment magnitudes Mw ≥ 5.5. Their configuration aligns well with observed recent seismicity trends and paleoseismological evidence.
индекс в базе ИАЦ: 037610