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Vol 236
Pages:
133
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RUS ENG

REFINED ASSESSMENT OF SEISMIC MICROZONATION WITH A PRIORI DATA OPTIMISATION

Authors:
I. B. Movchan1
A. A. Yakovleva2
About authors
  • 1 — Saint-Petersburg Mining University
  • 2 — Saint-Petersburg Mining University
Date submitted:
2018-11-20
Date accepted:
2018-12-28
Date published:
2019-04-25

Abstract

The work is devoted to the issues of seismic microzonation representativeness, which is amongst the mandatory assessments that precedes civil and industrial construction. In addition to the practical approach and in accordance with the normative documentation, the authors propose parametric interpretation of the remote basis by means of tracing geodynamic zones and elements of the geoblock structure, where the leading marker of seismogenic risk zones is the anomaly of spatial variability of the geofield, coinciding with the discordant intersection of localised land structures. Verification of this marker is achieved by displaying a cartographic distribution image within the range of the seismic point increment, detailed on the basis of approximation dependencies.

10.31897/pmi.2019.2.133
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References

  1. Aleshin A. S. Seismic microzoning of highly sensitive objects. Moscow: Svetoch Plyus, 2010, p. 303 (in Russian).
  2. Gzovskii M.V. Mathematics in geotectonics. Moscow: Nedra, 1971, p. 240 (in Russian).
  3. Magid M.Sh. Petrophysical characteristics of the lithosphere and mantle. Petrofizika. Zemnaya kora i mantiya: Spravochnik. Pod red. N.B.Dortman. Moscow: Nedra, 1992, p. 221-225 (in Russian).
  4. Maksimov A.B. On the seismic impedance of the soil. Eksperimental'naya seismologiya. Moscow: Nedra, 1971, p. 240 (in Russian).
  5. Medvedev S.V. Engineering seismology. Moscow: Stroiizdat, 1962, p. 284 (in Russian).
  6. Movchan I.B., Yakovleva A.A. The method of structural and morphological zoning on the example of N-38 map sheet. Zhur-nal nauchnykh publikatsii aspirantov i doktorantov. 2016. N 4 (118). 2016. p. 167-169 (in Russian).
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  8. General seismic zoning of the territory of the Russian Federation: Explanatory note to the set of maps OSR-2016 and a list of settlements located in seismic zones. Pod red. V.I.Ulomova, M.I.Bogdanova. Inzhenernye izyskaniya. 2016. N 7, p. 121 (in Russian).
  9. Petrov O.V., Movchan I.B. Applied aspects of the theory of dissipative non-equilibrium structuring of the geological medium. Dissipativnye struktury Zemli. St. Petersburg: Izd-vo VSEGEI, 2007, p. 202-267 (in Russian).
  10. Serkerov S.A. Spectral analysis in gravity and magnetic exploration. Moscow: Nedra, 1991, p. 279 (in Russian).
  11. Ulomov V.I., Shumilina L.S. The problem of seismic zoning in Russia. Moscow: Vserossiiskii NII problem nauchno-tekhnicheskogo progressa i informatsii v stroitel'stve, VNIINTPI Gosstroya Rossii, 1999, p, 42 (in Russian).
  12. Khesin B.E., Alekseev V.V., Metaksa Kh.P. Interpretation of magnetic anomalies in conditions of oblique magnetization and rugged topography. Moscow: Nedra, 1983, p. 288 (in Russian).
  13. Matasovic N. Seismic response of composite horizontally-layered soil deposit: Ph.D. Thesis. Univ.of California, LA, USA. 1993, p. 235.
  14. Movchan I.B., Yakovleva A.A. Experience of qualitative and quantitative interpretation of nonpotential geofields with surface and deep morphostructural reconstructions on the example of Unica ore province (Kareljya, Russia). International Journal of Mechanical Engineering and Technology (IJMET). 2017. Vol. 8. Iss. 12, р. 926-932.
  15. Movchan I.B., Kirsanov А.А., Yakovleva A.A. Qualitative interpretation of remote sensing materials in environmental and geological problems. World Applied Sciences Journal. 2014. Vol. 30(1), p. 39-45.

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