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February 22, 2026Физика Земли / Izvestiya Physics of the Solid Earth0 citations

Seismotectonics and Seismicity in the Area of the Tsagan Earthquake (1862, M7.5, the Selenga Delta, Baikal)

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NRN. A. RadziminovichInstitute of the Earth’s Crust

Key Points

  • This research aims to understand the seismic activity and fault mechanisms associated with the Tsagan earthquake in 1862.
  • Analyzed shallow geophysical studies in Selenga delta and surrounding regions
  • Studied seismicity and fault characteristics in the South Baikal depression
  • Compared coseismic effects between the Tsagan and Middle Baikal earthquakes
  • Identified epicentral zones in an echelon pattern in the Deltaic fault area
  • Found significant similarity in coseismic effects between the Tsagan and Middle Baikal earthquakes
  • Noted subsidence of the northeastern block of the Delta trough after the earthquake
  • Measured vertical movements of up to 35 m during seismotectonic activation
  • Observed enhanced clustering of weak shocks post-major events

Abstract

The paper analyzes the results of shallow geophysical studies and seismicity of the Selenga delta and adjacent areas of the South Baikal depression, where the catastrophic Tsagan earthquake of 1862 with M7.5 occurred. This study area is characterized by the formation of epicentral zones, substituting each other in an echelon manner, as well as seismic “silence” of the eastern segment of the Deltaic fault, to which the dislocations of the Tsagan earthquake are confined. The distribution of seismicity, as well as the similarity of coseismic effects during the Tsagan and Middle Baikal (1959, M6.8) earthquakes, allow us to assume that the shock of 1862 was caused by a fault slip within the water area, either along the flank Beregovoy fault or along the intra-depression Middle Baikal fault, which length allows an earthquake with M 7 to occur. The activation of one of these faults in 1862 led to the subsidence of the northeastern block of the Delta trough with the opening of ruptures along its perimeter, including along the Delta fault. The consequence of the activation of the environment after strong events and the clustering of strong shocks in time is a large number of weak shocks, which is reflected in the increased value of the recurrence graph slope (γ = −0.54 ± 0.01). According to geophysical data, the range of vertical movements during the last cycle of seismotectonic activation reaches 35 m.

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Cite This Study

N. A. Radziminovich (2025) studied this question.

synapsesocial.com/papers/699a9d7a482488d673cd3542https://doi.org/10.7868/s3034645225050079
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