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Vol 212
Pages:
101-112
Download volume:
RUS
Article

Pilot electromagnetic soundings with the use of industrial power transmission line «Urengoy – Pangody» along with AMT-MT-Soundings

Authors:
A. A. Zhamaletdinov1
A. N. Shevtsov2
V. V. Kolobov3
M. S. Petrishchev4
About authors
  • 1 — Ph.D., Dr.Sci. Chief Research Scientist St Petersburg branch of IZMIRAN
  • 2 — Ph.D. Senior Research Scientist Geological Institute, RAS
  • 3 — Ph.D. Leading Research Scientist Institute of Physical and Technical Problems Energy North KSC RAS
  • 4 — Ph.D. Head of Division St. Petersburg branch of IZMIRAN
Date submitted:
2014-08-19
Date accepted:
2014-10-19
Date published:
2015-04-10

Abstract

In 2011 and 2012 insitu electromagnetic soundings using the industrial power transmission line «Urengoy-Pangody» were taken in the Yamal-Nenets Autonomous District (YaNAD). They were conducted both in the field of the extralow frequencies (ELF) antenna «Zeus» located on the Kola Peninsula and in the fields of the natural sources (AMT-MT). Conductive layers were installed at depths of a few hundred meters and more than 1 km. These layers were linked with changes in lithology, porosity and fluid saturation of rocks. The research results showed perspectivity of complex electromagnetic sounding with natural and powerful controlled sources to find gas and oil promising horizons at a depth in the sedimentary cover of the West Siberian platform in the YaNAD.

Область исследования:
(Archived) Application of up-to-date electric exploration technologies in mineral deposits prospecting
Keywords:
electromagnetic sounding controlled and natural sources industrial power lines
Go to volume 212

Funding

Работа выполнена на средства грантов РФФИ 11-05-12033-офи-м-2011 и 13-05-12044- офи-м-2013 при поддержке губернатора ЯНАО Д.Н.Кобылкина, сотрудников Администрации ЯНАО И.В.Петровой и А.Л.Титовского, а также руководства МЭС Западной Сибири и Ямало-Ненецкого ПМЭС, предоставивших ВЛ-220 «Уренгой – Пангоды» в качестве антенны для проведения эксперимента по глубинному электромагнитному зондированию земной коры в нефтеперспективных районах Западной Сибири.

References

  1. Berdichevsky M.N. Jelektricheskaja razvedka metodom magnitotelluricheskogo profilirovanija (Electrical prospecting method of magnetotelluric profiling). Moscow: Nedra, 1968, 255 p.
  2. Megerja V.M., Filatov V.G., Starostenko V.I., Korchagin I.N., Lobanov A.M., Glasko Yu.V, Wolotzkov M.Yu., Chkachkov S.A. Vozmozhnosti i perspektivy primenenija nesejsmicheskih metodov dlja poiskov skoplenij uglevodorodov i geosolitonnaja koncepcija ih obrazovanija (The possibilities and perspectives of non-seismic methods for hydrocarbon accumulation and a geosoliton concept of their formation). Geofizicheskij zhurnal. Kiev: Naukova Dumka, 2012. Vol.34, N 3, p.4-21.
  3. Barannik M.B., A.N.Danilin, B.V.Efimov, V.V.Kolobov, P.I.Prokopčuk, V.N.Selivanov, A.N.Shevtsov, Ye.A.Kopytenko, A.A.Zhamaletdinov. Vysokovol'tnyj silovoj invertor generatora «Jenergija-2» dlja jelektromagnitnyh zondirovanij i monitoringa ochagovyh zon zemletrjasenij (High-voltage power inverter of «Energy-2» generator for electromagnetic sounding and monitoring of earthquake source zones). Sejsmicheskie pribory. 2009. Vol.45, N 2. p.5-23.
  4. Zhamaletdinov A.A. Teorija i metodika glubinnyh jelektromagnitnyh zondirovanij s moshhnymi kontroliruemymi istochnikami (opyt kriticheskogo analiza) (A Theory and methods of deep electromagnetic soundings with powerful controlled sources (a case study)). St Petersburg: Solo, 2012, p.163. ISBN 978-5-98340-272-0 (book).
  5. Zhdanov M.S. Sto let jelektromagnitnoj geofiziki: zametki o proshlom i doroga v budushhee (One Hundred Years of electromagnetic geophysics: The past and the future) St Petersburg, Petrodvorec. St Petersburg: Izd-vo SPbGU, 2011.Book 1, p.52-85.
  6. Ingerov O.I. Sovremennye tendencii v razvitii apparaturnogo kompleksa dlja jelektrorazvedochnyh rabot na sushe i na more (Current trends in development of hardware complexes for electrical exploration on land and at sea). Materialy 5-j Vserossijskoj shkoly JeMZ-2011, St Petersburg, Petrodvorec. St Petersburg, Izd-vo SPbGU. 2011. Book 1, p.86-103.
  7. Kolobov V.V., Kuklin D.N., Shevtsov A.N., Zhamaletdinov A.A. Mnogofunkcional'naja cifrovaja izmeritel'naja stancija KVVN-7 dlja jelektromagnitnogo monitoringa sejsmoaktivnyh zon (A Multifunctional digital measuring station KVVN-7 for electromagnetic monitoring of seismically active areas). Sejsmicheskie pribory. 2011. Vol.47, N 2, p.47-61.
  8. Velikhov E.P., Zhamaletdinov A.A., Sobchak L.A., Veshev A.V., Saraev A.K., Tokarev A.D., Shevtsov A.N., Vasiliev A.V., Sonnikov A.G., Yakovlev A.V. Opyt hastotnogo jelektromagnitnogo zondirovanija zemnoj kory s primeneniem moshhnoj antenny SNCh-diapazona (A Case of frequency electromagnetic sounding of the Earth's crust using a powerful ELF-antenna). DAN. 1994. Vol.338, N 1, p.106-109.
  9. Semenov V.Yu., Harin E.P. Jelektroprovodnost' mantii po dannym rossijskih geomagnitnyh observatorij (Electrical conductivity of the mantle according to Russian geomagnetic observatories). Fizika Zemli. 1997. N 9, p.31-37.
  10. Zhamaletdinov A.A., Petrishchev M.S., Shevtsov A.N., Kolobov V.V., Selivanov V.N., Esipko O.A., Kopytenko Ye.A., Grigoriev V.F. Jelektromagnitnoe zondirovanie zemnoj kory v rajone sverhglubokih skvazhin SG-6 i SG-7 v poljah estestvennyh i moshhnyh kontroliruemyh istochnikov (Electromagnetic sounding of the earth's crust in the area of ultra-deep wells SH-6 and SH-7 in the fields of natural and powerful controlled sources). DAN. 2012. Vol.445. N 2, p.205-209.
  11. Kuvshinov A., Utada H., Avdeev D., Koyama T. 3D modeling and analysis of the Dst EM Responses in the North Pacific Ocean region (3D modeling and analysis of the Dst EM Responses in the North Pacific Ocean region). Geophys. J. Int. 2005. N 160, p.505-526.
  12. Boerner D.E. Controlled source electromagnetic deep sounding: theory, results and correlation with natural source results. Invited Review Paper for the 10th Workshop on EM Induction. Ensenada: Mexico. 1991, p.3-50.
  13. Constable S.C., Parker R.L., Constable C.G. Occam's inversion; a practical algorithm for the inversion of electromagnetic data. Geophysics, 1987. 52, p.289-300.
  14. Kopytenko Ye.A., Palshin N.A., Poljakov S.V., Schennikov A.V., Reznikov B.I., Samsonov B.V. New portable multifunctional broadband MT System. IAGA WG 1.2 on Electromagnetic Induction in the Earth 20th Workshop Abstract, Giza, Egypt, September 18-24, 2010.
  15. Vozar J. & Semenov V.Yu. Compatibility of induction methods for mantle soundings. Journal of geophysical research. 2010. Vol.15. B03101.

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