Effect of coupling noise on the interpretation of results of electromagnetic horizontal sounding and modeling

The time variation of a source of alternating current produces an electromagnetic coupling between the transmitting and receiving systems in induced electrical polarization and resistivity surveys that employ horizontal electrical sounding. The coupling alters, sometimes significantly, the resistivi...

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Published inStudia geophysica et geodaetica Vol. 61; no. 4; pp. 801 - 825
Main Authors Mocitaiba, Leonardo S. R., Sampaio, Edson E. S., de Lima, Olivar A. L.
Format Journal Article
LanguageEnglish
Published Dordrecht Springer Netherlands 01.10.2017
Springer Nature B.V
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ISSN0039-3169
1573-1626
DOI10.1007/s11200-015-0348-5

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Abstract The time variation of a source of alternating current produces an electromagnetic coupling between the transmitting and receiving systems in induced electrical polarization and resistivity surveys that employ horizontal electrical sounding. The coupling alters, sometimes significantly, the resistivity and chargeability values and, consequently, compromises the interpretation of the data. This work develops the analysis of this coupling on the time domain for both a homogeneous Earth and an Earth constituted of several homogeneous horizontal layers. Based on the results, it evaluates the theoretical variation of the voltage and compares it to observed data of an induced electrical polarization and resistivity survey with horizontal electrical sounding. The comparative study of the voltage decay curves assesses the contribution of the electromagnetic coupling to the values of the chargeability and apparent resistivity as a function of the bipole length and the period of the source current. Besides that, the respective pseudosections have delineated the horizontal and vertical variations of those two electrical properties, providing the interpretation of the geoelectrical section. This research is important for the oil industry because it may furnish information that help to: (i) define the structure of the sedimentary strata; (ii) estimate the clay content of the sandstones; and (iii) detect the possible presence of metallic sulphide halos at fractured zones of the sediments above the oil reservoir. It may be adapted to analysis of EM coupling in both resistive and induced electric well logs.
AbstractList The time variation of a source of alternating current produces an electromagnetic coupling between the transmitting and receiving systems in induced electrical polarization and resistivity surveys that employ horizontal electrical sounding. The coupling alters, sometimes significantly, the resistivity and chargeability values and, consequently, compromises the interpretation of the data. This work develops the analysis of this coupling on the time domain for both a homogeneous Earth and an Earth constituted of several homogeneous horizontal layers. Based on the results, it evaluates the theoretical variation of the voltage and compares it to observed data of an induced electrical polarization and resistivity survey with horizontal electrical sounding. The comparative study of the voltage decay curves assesses the contribution of the electromagnetic coupling to the values of the chargeability and apparent resistivity as a function of the bipole length and the period of the source current. Besides that, the respective pseudosections have delineated the horizontal and vertical variations of those two electrical properties, providing the interpretation of the geoelectrical section. This research is important for the oil industry because it may furnish information that help to: (i) define the structure of the sedimentary strata; (ii) estimate the clay content of the sandstones; and (iii) detect the possible presence of metallic sulphide halos at fractured zones of the sediments above the oil reservoir. It may be adapted to analysis of EM coupling in both resistive and induced electric well logs.
Author Mocitaiba, Leonardo S. R.
Sampaio, Edson E. S.
de Lima, Olivar A. L.
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  givenname: Edson E. S.
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  givenname: Olivar A. L.
  surname: de Lima
  fullname: de Lima, Olivar A. L.
  organization: Centro de Pesquisa em Geofísica e Geologia, UFBA
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CitedBy_id crossref_primary_10_1088_1755_1315_302_1_012065
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Cites_doi 10.1071/EG00134
10.1190/1.1440348
10.1144/1354-079311-003
10.1007/PL00001058
10.1190/1.9781560802716.ch2e
10.1190/geo2014-0060.1
10.1111/j.1365-246X.2001.00384.x
10.1046/j.1365-2478.2002.00344.x
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Snippet The time variation of a source of alternating current produces an electromagnetic coupling between the transmitting and receiving systems in induced electrical...
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SubjectTerms Atmospheric Sciences
Clay
Comparative analysis
Comparative studies
Coupling
Earth
Earth and Environmental Science
Earth Sciences
Electric currents
Electric potential
Electrical properties
Electrical resistivity
Electromagnetic coupling
Electromagnetics
Fractures
Geoelectricity
Geophysics/Geodesy
Halos
Modelling
Noise
Oil and gas industry
Oil reservoirs
Polarization
Polls & surveys
Sandstone
Sediments
Sound
Sounding
Structural Geology
Sulfides
Sulphides
Surveying
Surveys
Time
Variation
Voltage
Well logs
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Title Effect of coupling noise on the interpretation of results of electromagnetic horizontal sounding and modeling
URI https://link.springer.com/article/10.1007/s11200-015-0348-5
https://www.proquest.com/docview/1953070646
Volume 61
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