METHODS OF SEARCHING AND DELINERING OF HYDROCARBON DEPOSITS USING MODULATED AND RADIO PULSE SIGNALS

Main Article Content

V. YANUSHKEVICH

Abstract

The article studies the characteristics of an anisotropic medium over hydrocarbons using modulated and radio pulse signals. The modeling of the components of the surface impedance of the medium over hydrocarbon deposits in the mode of amplitude-frequency-modulated signals and the real components of the permittivity tensor in the mode of radio pulse signals was carried out. Attention is focused on the use of radio complexing of electromagnetic methods with an increase in the number of information channels. A study was made of the influence of probing signal modes on the characteristics of an anisotropic medium above deposits and the components of the permittivity tensor. Recommendations are given for the practical use of the results. Methods and techniques for geoelectric exploration of hydrocarbon deposits are proposed.

Article Details

How to Cite
YANUSHKEVICH, V. (2022). METHODS OF SEARCHING AND DELINERING OF HYDROCARBON DEPOSITS USING MODULATED AND RADIO PULSE SIGNALS. Vestnik of Polotsk State University. Part C. Fundamental Sciences, (11), 89-98. https://doi.org/10.52928/2070-1624-2022-39-11-89-98
Section
Physics
Author Biography

V. YANUSHKEVICH, Euphrosyne Polotskaya State University of Polotsk

канд. техн. наук, доц.

References

Moskvichew, V. N. (1991). Interraction of electromagnetic waves (EMW) with anisotropic inclusion in communication line, 9th Microw. Conf. NICON – 91: Vol. 1, (240–244). Rydzyna.

Yanushkevich, V. F., Dauhiala, D. A., Adamovich, A. L., Abramenka, S. N., & Bogush, V. A. (2021). Effect of a powerful low-frequency signal on an anisotropic medium over hydrocarbon // Journal of Physics [Conference Series], (1889). DOI: 10.1088/1742-6596/1889/2/022059.

Gololobov, D. V. (2009) Vzaimodeistvie elektromagnitnykh voln i uglevodorodnykh zalezhei [Interaction of electromagnetic waves and hydrocarbon deposits]. Minsk: Bestprint. (In Russ.).

Anderson, C., & Mattsson, J. (2010). An integrated approach to marine electromagnetic surveying using a towed streamer and source. First Break, 28(5), 71–75.

Henke, C. H., Krieger, M., Strack, K., & Zerilli, A. (2020). Subsalt imaging in Northern Germany using multi-physics (magnetotellurics, gravity, and seismic). Interpretatio, 8(4), 15–24.

Khmelevskoi, V. K., Gorbachev, Yu. I., Kalinin, A. V., Popov, M. G., Seliverstov, N. I., & Shevnin, V. A. (2004). Geofizicheskie metody issledovaniya [Geophysical research methods]. Petropavlovsk-Kamchatskii: KGPU.

Holten, T., Luo, X., Naevdal, G., & Helwig, S. L. (2016). Time lapse CSEM reservoir monitoring of the Norne field with vertical dipoles. SEG Technical Program Expanded Abstracts, (35), 971–975.

Koskov, V. N. (2004). Geofizicheskie issledovaniya skvazhin [Geophysical research of wells]. Perm: Perm. gos. tekhn. un-t. (In Russ.).

Geldmacher, I., & Strack, K. (2017). A Fit-for-purpose electromagnetic System for Reservoir Monitoring and Geothermal Exploration. GRC Transactions, (41), 1649–1658.

Gololobov, D. V., & Yanushkevich, V. F. (1995). Vzaimodeistvie AM-signala s uglevodorodnoi zalezh'yu [Interaction of the AM-signal with a hydrocarbon reservoir]. In Sovremennye problemy radiotekhniki, elektroniki i svyazi [Modern problems of radio engineering, electrodynamics and communications] (6–7). Minsk: BSUIR. (In Russ.).

Burtsev, M. I. (2006). Poiski i razvedka mestorozhdenii nefti i gaza [Search and exploration of oil and gas fields]. Moscow: RUDN. (In Russ.).

Helwig, S. L., Wood, W., & Gloux B. (2019). Vertical–vertical controlled‐source electromagnetic instrumentation and acquisition. Geophysical Prospecting, 67(6), 1582–1594.

Railyan, I. G. (2002). Novaya rossiiskaya sputnikovaya tekhnologiya poiska mestopolozhenii nefti, gaza i drugikh poleznykh iskopaemykh [New Russian satellite technology for searching for the locations of oil, gas and other minerals]. Neft', gaz i biznes, (6), 20. (In Russ.).

Yanushkevich, V. F. (2017). Elektromagnitnye metody poiska i identifikatsii uglevodorodnykh zalezhei [Electromagnetic methods for searching and identifying hydrocarbon deposits]. Novopolotsk: PGU. (In Russ.).

Gololobov, D. V., Orlova, O. V., & Yanushkevich, V. F. (2010). Vliyanie parametrov amplitudno-modulirovannogo vozdeistviya na fazovye sostavlyayushchie poverkhnostnogo impedansa anizotropnoi sredy plazmopodobnogo tipa [Influence of the amplitude-modulated effect parameters on the phase components of the surface impedance of an anisotropic plasma-like medium]. Vestnik Polotskogo gosudarstvennogo universiteta. Seriya C, Fundamental'nye nauki [Herald of Polotsk State University. Series С. Fundamental sciences], (9), 98–101. (In Russ., abstr. in Engl.).

Gololobov, D. V., Tsyvis, N. V., Yanushkevich, V. F., Kalintsev, S. V., & Khadyko, D. L. (2002). Vzaimodeistvie ChMsignalov s anizotropnoi sredoi [Interaction of FM signals with an anisotropic medium]. In Problemy proektirovaniya i proizvodstva radioelektronnykh sredstv [Problems of design and production of radio electronic facilities] (300–303). Novopolotsk: PSU. (In Russ.).

Stepulenok, S. V., & Yanushkevich, V. F. (2009). Vzaimodeistvie amplitudno-chastotno-modulirovannykh signalov so sredoi nad uglevodo-rodnymi zalezhami [Interaction of amplitude-frequency-modulated signals with the environment above hydrocarbon deposits]. Vestnik Polotskogo gosudarstvennogo universiteta. Seriya C, Fundamental'nye nauki [Herald of Polotsk State University. Series С. Fundamental sciences], (9), 103–108. (In Russ., abstr. in Engl.).

Gololobov, D. V. (2008). Radiokompleksirovanie metodov elektromagnitnoi razvedki pri poiske zalezhei uglevodorodov [Radiocomplexation of the electromagnetic geological methods for exploration of hydrocarbon objects]. Doklady BGUIR, 8(38), 30–36. (In Russ., abstr. in Engl.).