APPLICATION OF AMPLITUDE-FREQUENCY-MODULATED SIGNALS FOR HYDROCARBON SEARCH
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Abstract
The phase characteristics of the surface impedance of the medium above hydrocarbon deposits were studied in the mode of their interaction with amplitude-frequency-modulated signals. The characteristics of the geological profile above oil and gas deposits were investigated depending on the carrier frequency, modulating frequency and modulation index. The rationale for using sounding with amplitude-frequency-modulated signals for practical implementation in order to increase the information content and accuracy of determining hydrocarbon boundaries was provided. A method for geoelectric exploration was developed to determine hydrocarbon boundaries using amplitude-frequency-modulated signals based on measuring the phase characteristics of the surface impedance of the medium above the deposits. The results obtained can be used for exploration geophysics in order to detect oil and gas deposits.
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This work is licensed under a Creative Commons Attribution 4.0 International License.
V. YANUSHKEVICH, Euphrosyne Polotskaya State University of Polotsk
канд. техн. наук, доц.
References
Zhdanov, M., Anderson, C., Endo, M., Cox, L., Čuma, M., Wilson, G. A., … Gribenko, A. V. (2012). 3D inversion of towed streamer EM data: a model study of the Harding field with comparison to CSEM. First Break, 30(4), 71–74. DOI: 10.3997/1365-2397.30.4.57977.
Zach, J. J., Bjorke, A. K., Storen, T., & Maao, F. (2008). 3D inversion of marine CSEM data using a fast finite-difference time-domain forward code and approximate Hessian-based optimization. SEG Technical Program Expanded Abstracts, 27(1), 614–618. DOI: 10.1190/1.3063726.
Sun, Q., Tan, H., Wan, W., & Hu, Q. (2024). Research on 3D Time-Lapse Electric Field Inversion Algorithm for Controlled Source Audio-Frequency Magnetotelluric Method. Applied Sciences, 14(4), 1560. DOI: 10.3390/app14041560.
Anderson, C., & Mattsson, J. (2010). An integrated approach to marine electromagnetic surveying using a towed streamer and source. First Break, 28(5), 71–75. DOI: 10.3997/1365-2397.28.5.38986.
Veeken, P., Legeydo, P. J., Davidenko, Y. A., Kudryavceva, E. O., Ivanov, S. A., & Chuyaev, A. (2009). Benefits of the induced polarization geoelectric method to hydrocarbon exploration. Geophysics, 74(2), B47–B59. DOI: 10.1190/1.3076607.
Chen, J., & Alumbaugh, D. L. (2011). Three methods for mitigating airwaves in shallow water marine controlled-source electromagnetic data. Geophysics, 76(2), F89–F99. DOI: https://doi.org/10.1190/1.3536641.
Guliev, I. I. (2013). Sovremennye vzgljady na proishozhdenie nefti i gaza [Current views on the origin of the oil and gas]. Nauchnye trudy NIPI «Neftegaz», (4), 21–24. (In Russ., abstr. in Engl.).
Davydycheva, S., Rykhlinski, N., & Legeido, P. (2006). Electrical-prospecting method for hydrocarbon search using the induced-polarization effect. Geophysics, 71(4), G179–G189. DOI: 10.1190/1.2217367.
Janushkevich, V. F., Shhadenkov, Ju. A., & Bezdel', A. O. (2010). Fazovye harakteristiki poverhnostnogo impedansa sredy nad uglevodorodami pri amplitudno-chastotnom modulirovannom vozdejstvii [Phase Characteristics of Surface Impedance of the Environment over Hydrocarbons at Amplitude-Frequency-Modulated Influence]. Vestnik Polotskogo gosudarstvennogo universiteta. Seriya C, Fundamental'nye nauki [Herald of Polotsk State University. Series С. Fundamental sciences], (9), 111–115. (In Russ., abstr. in Engl.).
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