Яндекс.Метрика

 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