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Vol 189
Pages:
27-29
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RUS
Research article
Geology and geophsics

The depth estimation of 2D conductive isometrical bodies by singular points at the tipper frequency characteristic

Authors:
E. Yu. Ermolin1
O. Ingerov2
About authors
  • 1 — post-graduate student Saint Petersburg State Mining Institute (Technical University)
  • 2 — vice-president of «PHOENIX GEOPHYSICS» LTD «PHOENIX GEOPHYSICS» LTD
Date submitted:
2010-07-29
Date accepted:
2010-09-02
Date published:
2011-03-21

Abstract

The relation between parameters of 2D anomaly body and features of vertical sections of tipper amplitude are considered in this paper. According to investigations the depth of center, top and bottom of conductive body is connected with geometrical distance between two symmetrically located positive extremes in tipper pseudo-sections. In addition the tipper amplitude in extremes decreases on account of increasing depth of anomalous body. The described regularities can be used for MT projects planning and quantitative estimation of anomalous body parameters using tipper pseudo-section constructed from field data.

Keywords:
tipper induction arrows two dimensional structures
Ермолин Е.Ю., Ингеров О. Оценка глубины залегания двумерных электропроводников изометрического сечения по особым точкам частотных характеристик типпера // Записки Горного института. 2011. Т. 189. С. 27-29.
Ermolin E.Y., Ingerov O. The depth estimation of 2D conductive isometrical bodies by singular points at the tipper frequency characteristic // Journal of Mining Institute. 2011. Vol. 189. p. 27-29.
Go to volume 189

References

  1. Lam Н. et al. The response of perturbation and induction arrows to a three-dimensional buried anomaly // Geophysics 47, 1982. V.1. P.51-59.
  2. Rokityansky I.I. Geoelectromagnetic Investigation of the Earth's Crust and mantle. Springer-Verlag, Berlin, Heidelberg, New York, l982. 378 p.
  3. Ingerov O. et al. Hi sensitivity EM prospecting technique based on measurement of three magnetic components of natural EM field. 19th IAGA WG Workshop on Electromagnetic Induction in the Earth, Beijing. 2008. P.965-970.
  4. Ingerov O. et al. Non-grounded Surface Electroprospecting Technique., 70th EAGE annual Conference. 2009. Amsterdam.

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