{"id":2171,"date":"2015-02-02T11:21:05","date_gmt":"2015-02-02T09:21:05","guid":{"rendered":"http:\/\/www.geology.com.ua\/?page_id=2171"},"modified":"2016-06-07T11:30:35","modified_gmt":"2016-06-07T09:30:35","slug":"2171-2","status":"publish","type":"page","link":"http:\/\/www.geology.com.ua\/en\/2171-2\/","title":{"rendered":"(\u0423\u043a\u0440\u0430\u0457\u043d\u0441\u044c\u043a\u0430) Geoinformatika 2014; 2(50) : 5-21"},"content":{"rendered":"<p>Geoinformatika 2014; 2(50) : 5-21\u00a0 (in Russian)<\/p>\n<h4>RESULTS OF DETAILED GEOPHYSICAL INVESTIGATIONS\u00a0FOR THE HYDROCARBONS ACCUMULATIONS EXPLORATION\u00a0WITHIN UKRAINIAN SHIELD<\/h4>\n<p><em>S.P. Levashov<\/em><em><sup>1,2<\/sup><\/em><em>, N.A. Yakymchuk<\/em><em><sup>1,2<\/sup><\/em><em>, I.N. Korchagin<\/em><em><sup>3<\/sup><\/em><em>, D.N. Bozhezha<\/em><em><sup>2<\/sup><\/em><em>, D.R. Shust<\/em><em><sup>4<\/sup><\/em><\/p>\n<p><em><sup>1<\/sup>Institute of Applied Problems of Ecology, Geophysics and Geochemistry,Laboratorny lane, 1, Kyiv 01133, Ukraine<br \/>\n<\/em><em><sup>2<\/sup>Management and Marketing Center of Institute of Geological Science NAS Ukraine,<br \/>\nLaboratorny lane, 1, Kyiv 01133, Ukraine<br \/>\n<\/em><em><sup>3<\/sup>Institute of Geophysics of Ukraine National Academy of Science,<br \/>\nPalladin av., 32, Kiev 03680, Ukraine, e-mail: korchagin@karbon.com.ua<br \/>\n<\/em><em><sup>4<\/sup>Ltd. \u201cGeophysics-777\u201d, Kiev, Ukraine<\/em><\/p>\n<p style=\"text-align: justify\">The results of the application of technology of frequency-resonance processing and interpretation of remote sensing (RS) data and geoelectric methods of forming short-pulsed electromagnetic field (FSPEF) and vertical electric-resonance sounding (VERS) (FSPEF-VERS express-technology) for the hydrocarbons accumulation searching on three prospect area (\u201cSouth\u201d, \u201cWest\u201d, \u201cNorth\u201d) in the different parts of the Ukrainian crystalline shield are analyzed. The anomalous zone of the \u201coil reservoir\u201d, \u201ccondensate reservoir\u201d and \u201cgas reservoir\u201d type was detected and mapped within all investigated areas by the remote sensing data processing. These anomalies were confirmed and detailed by the FSPEF survey. The bedding depths of the anomalous polarized layers (APL) of oil, gas and gas-condensate type were determined by VERS sounding within anomalous zone. The projected resources of gas, condensate and oil have been estimated for all investigated plots by the results of detailed studies. The site \u201cNorth\u201d is recommended for priority drilling. The optimal area for exploratory well laying was highlighted within it. The investigation results show that mobile technologies can be used for exploration and prospecting the hydrocarbon accumulations in crystalline massifs and tectonic fracture (fault) zones of the crystalline basement. The operative assessment of petroleum potential of insufficiently studied sites and areas in different regions of Ukraine can be made with mobile geophysical technologies using. The used mobile methods works within the framework of the \u201csubstantial\u201d paradigm of geological and geophysical studies, the essence of which is \u201cdirect\u201d searching for a particular substance such as oil, gas, gold, silver, platinum, zinc, iron, water, etc.\u00a0 FSPEF method and technology of remote sensing data processing allow to detect and map operatively the anomalous zones of the \u201coil accumulation\u201d and (or) \u201cgas accumulation\u201d type. The bedding depths of the anomalous polarized layers (APL) of gas and gas-condensate type may be determined by VERS sounding within one anomalous areas. Mobile technology allows to get a new (additional) and, more importantly, independent information on the petroleum potential of the surveyed areas. This information, in conjunction with available geological and geophysical materials can be used to select the objects for detailed studying and primary drilling.<\/p>\n<p style=\"text-align: justify\"><strong>Keywords:<\/strong> Geoelectric survey, electric-resonance sounding, anomaly \u201cdeposit\u201d type, gas, gas condensate, fault zone, crystalline massif, basement, satellite data, technology, direct searching, processing and interpretation.<\/p>\n<p style=\"text-align: justify\"><span style=\"text-decoration: underline;color: #0000ff\"><em><strong><a style=\"color: #0000ff;text-decoration: underline\" href=\"http:\/\/www.irbis-nbuv.gov.ua\/cgi-bin\/irbis_nbuv\/cgiirbis_64.exe?I21DBN=LINK&amp;P21DBN=UJRN&amp;Z21ID=&amp;S21REF=10&amp;S21CNR=20&amp;S21STN=1&amp;S21FMT=ASP_meta&amp;C21COM=S&amp;2_S21P03=FILA=&amp;2_S21STR=geoinf_2014_2_3\">The full text of papers\u00a0<\/a> <\/strong><\/em><\/span><\/p>\n<p><a href=\"sh()\"><strong>References<\/strong><\/a><\/p>\n<div id=\"info\" style=\"padding-top: 15px\">\n<ol>\n<li style=\"text-align: justify\">Bembel R.M., Megerya V.M., Bembel S.R. <em>Geosolitony: funktsional\u2019naya sistema Zemli, kontseptsiya razvedki i razrabotki mestorozhdeniy uglevodorodov<\/em> [Geosolitony: functional system of the Earth, the concept of exploration and exploitation of hydrocarbons]. Tyumen\u2019: <em>Vektor Buk<\/em>, 2003, 344 p.<\/li>\n<li style=\"text-align: justify\">Valyaev B.M. <em>Priroda i osobennosti prostranstvennogo rasprostranenija netradicionnyh resursov uglevodorodov i ih skoplenij <\/em>[Nature and characteristics of the spatial distribution of unconventional hydrocarbon resources and their accumulations]. <em>Gazovaja promyshlennost\u2019. Netradicionnye resursy nefti i gaza &#8211; prilozhenie k zhurnalu<\/em> [Gas industry, Unconventional oil and gas resources &#8211; supplement to the journal], 2012, pp. 9-16.<\/li>\n<li style=\"text-align: justify\">Gavrilov V.P. <em>Novyy vozmozhnyy neftegazonosnyy etazh zemnoy kory<\/em> [Possible new oil and gas of the Earth crust]. <em>ROGEKH. Rossiyskie neftegazovye tekhnologii<\/em> [ROGEH. Russian oil and gas technology], 2006, no. 7, pp. 26-30.<\/li>\n<li style=\"text-align: justify\">Karasevich A.M., Zemtsova D.P., Nikitin A.A. <em>Novye tehnologii geofizicheskih issledovanij pri poiskah i prognoze uglevodorodnogo syr\u2019ja<\/em> [New technologies geophysical research for the hydrocarbons search and forecasting]. Moscow: <em>Strahovoe revju<\/em>, 2010, 140 p.<\/li>\n<li style=\"text-align: justify\">Karpov V.A. <em>Sostojanie i perspektivy razvitija neftegazopoiskovyh rabot v Zapadnoj Sibiri<\/em> [Status and prospects of oil and gas exploration in Western Siberia]. <em>Geologija nefti i gaza<\/em> [Oil and gas geology], 2012, no. 3, pp. 2-6.<\/li>\n<li style=\"text-align: justify\">Kovalev N.I., Gokh V.A., Ivashchenko P.N., Soldatova S.V. <em>Opyt prakticheskogo ispol\u2019zovaniya apparatury kompleksa \u201cPoisk\u201d dlya obnaruzheniya i okonturivaniya uglevodorodnykh mestorozhdeniy<\/em> [Experience in the practical use of the \u201cPoisk\u201d equipment complex to detect and delineate hydrocarbon deposits]. <em>Geoinformatika<\/em> [Geoinformatics (Ukraine)], 2010, no 4, pp. 46-51.<\/li>\n<li style=\"text-align: justify\">Krinin V.A., Proskuryakov A.L., Piavko A.M., Chervoniy N.P., Levashov S.P. <em>Primenenie geoelektricheskikh metodov SKIP-VERZ dlya poiskov nefti i gaza v rayone Vankorskogo mestorozhdeniya<\/em> [Application of FSPEF-VERS geoelectric methods for oil and gas prospecting in the Vankor oil-and-gas field area]. <em>Neftjanoe hozjajstvo<\/em> [Oil industry], 2011, no. 11, pp. 18-21.<\/li>\n<li style=\"text-align: justify\">Kusov B.R. <em>Genezis nekotorykh uglerodsoderzhashchikh poleznykh iskopaemykh (Ot metana do almaza): Monografiya. Izdanie vtoroe, dopolnennoe<\/em> [Genesis some carbonaceous minerals (From methane to diamond): Monograph. Second edition, expanded]. Vladikavkaz: <em>IPO SOIGSI<\/em>, 2011, 195 p.<\/li>\n<li style=\"text-align: justify\">Levashov S.P., Yakymchuk M.A. Korchagin I.N. <em>Elektrorezonansnoe zondirovanie i ego ispol\u2019zovanie dlya resheniya zadach ekologii i inzhenernoy geologii<\/em> [Electric-resonance sounding method and its application for solving the environmental and engineering geology problems]. <em>Geologicheskiy zhurnal<\/em> [Geological journal], 2003, no. 4, pp. 24-28.<\/li>\n<li style=\"text-align: justify\">Levashov S.P., Yakymchuk N.A., Korchagin I.N., Degtyar R.V., Bozhezha D.N. <em>Obnaruzhenie i kartirovanie geoelektricheskimi metodami zon povyshennogo gazonasyshcheniya na ugol\u2019nykh shakhtakh<\/em> [Detection and mapping by geoelectric methods of zones with high gas saturation on the coal mines]. <em>Geofizika, EAGO<\/em> [Geophysika, EAGO], 2006, no. 2, pp. 58-63.<\/li>\n<li style=\"text-align: justify\">Levashov S.P., Yakymchuk N.A., Korchagin I.N. <em>Ekspress-tekhnologiya \u201cpryamykh\u201d poiskov i razvedki skopleniy uglevodorodov geoelektricheskimi metodami: rezul\u2019taty prakticheskogo primeneniya v 2001-2005 gg.<\/em> [Express technology of \u201cdirect\u201d prospecting and exploration for hydrocarbon accumulations by geoelectric methods: results of practical application in 2001-2005]. <em>Geoinformatika<\/em> [Geoinformatics (Ukraine)], 2006,no. 1, pp. 31-43.<\/li>\n<li style=\"text-align: justify\">Levashov S.P., Yakymchuk N.A., Korchagin I.N., Razin D.V., Yuzlenko A.T. <em>O vozmozhnosti kartirovaniya geoelektricheskimi metodami skopleniy uglevodorodov v kristallicheskikh porodakh<\/em> [On the possibility of hydrocarbons accumulations mapping in crystalline rocks by geoelectric methods]. <em>Geoinformatika<\/em> [Geoinformatics (Ukraine)], 2010, no.\u00a01, pp. 22-32.<\/li>\n<li style=\"text-align: justify\">Levashov S.P., Yakymchuk N.A., Korchagin I.N. <em>Novye vozmozhnosti operativnoj ocenki perspektiv neftegazonosnosti razvedochnyh ploshhadej, trudnodostupnyh i udalennyh territorij, licenzionnyh blokov<\/em> [New opportunities for rapid assessment of the hydrocarbon potential of exploration areas, difficult of access and remote areas, and license blocks]. <em>Geoinformatika <\/em>[Geoinformatics (Ukraine)], 2010, no. 3, pp. 22-43.<\/li>\n<li style=\"text-align: justify\">Levashov S.P., Yakymchuk N.A., Korchagin I.N. <em>Ocenka otnositel\u2019nyh znachenij plastovogo davlenija fljuidov v kollektorah: rezul\u2019taty provedennyh jeksperimentov i perspektivy prakticheskogo primenenija<\/em> [Evaluation of the relative values of fluid pressure in the reservoir: results of experiments and practical perspective]. <em>Geoinformatika<\/em> [Geoinformatics (Ukraine)], 2011, no. 2, pp.\u00a019-35.<\/li>\n<li style=\"text-align: justify\">Levashov S.P., Yakymchuk N.A., Korchagin I.N. <em>Vozmozhnosti mobil\u2019nyh geofizicheskih tehnologij pri poiskah i razvedke skoplenij metana v ugol\u2019nyh bassejnah i drugih netradicionnyh gorjuchih iskopaemyh<\/em> [Capabilities of mobile geophysical technologies during methane accumulations prospecting in coal basins and other unconventional fossil fuels]. <em>Geoinformatika <\/em>[Geoinformatics (Ukraine)], 2011, no. 3, pp. 5-25.<\/li>\n<li style=\"text-align: justify\">Levashov S.P., Yakymchuk N.A., Korchagin I.N. <em>Ispol\u2019zovanie mobil\u2019nyh geofizicheskih tehnologij dlja ocenki perspektiv neftegazonosnosti krupnyh blokov i glubinnyh gorizontov razreza (Prikaspijskaja vpadina, Respublika Kazahstan)<\/em> [The use of mobile technologies for geophysical evaluation of petroleum potential of large blocks and cut deep horizons (Caspian Basin, Kazakhstan)]. <em>Geoinformatika<\/em> [Geoinformatics (Ukraine)], 2012, no. 4, pp. 5-18.<\/li>\n<li style=\"text-align: justify\">Levashov S.P., Yakymchuk N.A., Korchagin I.N. <em>Chastotno-rezonansnyj princip, mobil\u2019naja geojelektricheskaja tehnologija: novaja paradigma geofizicheskih issledovanij<\/em> [Frequency-resonance principle, mobile geoelectric technology: a new paradigm of Geophysical Research]. <em>Geofizicheskij zhurnal<\/em> [Geophysical Journal], 2012, vol. 34, no. 4, pp. 167-176.<\/li>\n<li style=\"text-align: justify\">Levashov S.P., Yakymchuk N.A., Korchagin I.N., Pidlisna I.S. <em>O vozmozhnosti obnaruzhenija skoplenij gaza v plotnyh peschanikah mobil\u2019nymi i geofizicheskimi metodami<\/em> [On the possibility of gas accumulations detecting in tight sands by mobile geophysical methods]. <em>Geodinamika<\/em> [Geodynamics(Ukraine)], 2013, no. 2(15), pp. 210-212.<\/li>\n<li style=\"text-align: justify\">Levashov S.P., Yakymchuk N.A., Korchagin I.N. <em>Opyt primenenija mobil\u2019nyh geofizicheskih tehnologij pri poiskah i razvedke skoplenij uglevodorodov v kollektorah netradicionnogo tipa<\/em> [Experience of the mobile geophysical technologies application during the hydrocarbon accumulations prospecting in unconventional reservoirs]. <em>Geolog Ukrainy<\/em> [Ukrainian Geologist], 2013, no. 3(43), pp. 141-147.<\/li>\n<li style=\"text-align: justify\">Levashov S.P., Yakymchuk N.A., Korchagin I.N. <em>Mobil\u2019nye geofizicheskie tehnologii: opyt primenenija dlja poiskov zalezhej uglevodorodov v kristallicheskih porodah<\/em> [Mobile geophysical technologies: experience of the application for the hydrocarbons prospecting in crystalline rocks]. <em>Jelektronnyj zhurnal \u201cGlubinnaja neft\u201d<\/em> [Electronic Journal \u201cDeep oil\u201d], 2013, v. 1, no. 8, pp.1117-1141. &#8211; Available at: http:\/\/journal.deepoil.ru\/images\/stories\/docs\/DO-1-7-2013\/3_Levashov-Iakimchuk-Korchagin_1-8-2013.pdf<\/li>\n<li style=\"text-align: justify\">Timurziyev A.I. <em>K sozdaniju novoj paradigm neftegazovoj geologii na osnove glubinno-fil\u2019tracionnoj modeli neftegazoobrazovanija i neftegazonakoplenija<\/em> [Towards a new paradigm op Petroleum Geology based on the depth-filtration model of oil and gas origin and accumulation]. <em>Geofizika<\/em> [Geophysics (Russia)], 2007, no. 4, pp.49-60.<\/li>\n<li style=\"text-align: justify\">Timurziyev A.I. <em>Zakonomernosti prostranstvenno-stratigraficheskogo raspredelenija zalezhej nefti i gaza Zapadno-Sibirskoj neftegazonosnoj provincii na osnove predstavlenij ob ih glubinnom genezise, molodom vozraste i novejshem vremeni formirovanija <\/em>[Laws of spatially-stratigraphic allocation of oil and gas accumulations within the West-Siberian oil-and-gas bearing province on the basis of submissions about their deep origin and the young age and middle-late neogene time of formation]. <em>Jelektronnyj zhurnal \u201cGlubinnajaneft\u201d<\/em> [Electronic Journal \u201cDeep oil\u201d], 2013, vol. 1, no. 11, pp. 1720-1760. &#8211; Available at: http:\/\/journal.deepoil.ru\/images\/stories\/docs\/DO-1-11-2013\/5_Timurziev_1-11-2013.pdf<\/li>\n<li style=\"text-align: justify\">Shuman V.N., Levashov S.P., Yakymchuk N.A., Korchagin I.N. <em>Radiovolnovye zondiruyushchie sistemy: element teorii, sostoyanie i perspektiva<\/em> [Radio Wave Sounding Systems: Theoretical Postulates, State, Prospect]. <em>Geoinformatika <\/em>[Geoinformatics (Ukraine)], 2008, no. 2, pp. 22-50.<\/li>\n<li style=\"text-align: justify\">Shuman V.N. <em>Elektromagnitno-akusticheskie preobrazovaniya i vysokorazreshayushchie zondiruyushchie sistemy: novye vozmozhnosti i novye formulirovki starykh voprosov<\/em> [Electromagnetic-acoustic conversion and high-resolution sounding system, new opportunities and new formulations of old questions]. <em>Geofizicheskij zhurnal<\/em> [Geophysical Journal], 2012, vol. 34, no.3, pp.\u00a032-39.<\/li>\n<li style=\"text-align: justify\">Hodgson Nl., Intawong A. Derisking deep-water Namibia. <em>First Break<\/em>, 2013 vol.31, no. 12, p. 91-96.<\/li>\n<li style=\"text-align: justify\">Norway looks forward to continuing offshore fortunes. <em>First Break<\/em>, 2013 vol.31, no. 2, p. 26.<\/li>\n<li style=\"text-align: justify\">Poor exploration results could blight UK\u2019s offshore progress, Wood Mackenzie report suggests. <em>First Break<\/em>, 2013, vol.31, no. 2, p.\u00a028.<\/li>\n<li style=\"text-align: justify\">Weaver Barry W., Warren Roy K. Electric power grid induced geophysical prospecting method and apparatus. International Patent No WO 2004\/106973 A2, Dec. 9, 2004.<\/li>\n<\/ol>\n<p style=\"text-align: justify\">\n<\/div>\n<p>\/\/<\/p>","protected":false},"excerpt":{"rendered":"<p>Geoinformatika 2014; 2(50) : 5-21\u00a0 (in Russian) RESULTS OF DETAILED GEOPHYSICAL INVESTIGATIONS\u00a0FOR THE HYDROCARBONS ACCUMULATIONS EXPLORATION\u00a0WITHIN UKRAINIAN SHIELD S.P. Levashov1,2, N.A. Yakymchuk1,2, I.N. Korchagin3, D.N. Bozhezha2, D.R. Shust4 1Institute of Applied Problems of Ecology, Geophysics and Geochemistry,Laboratorny lane, 1, Kyiv 01133, Ukraine 2Management and Marketing Center of Institute of Geological Science NAS Ukraine, Laboratorny lane, 1, Kyiv 01133, Ukraine 3Institute of Geophysics of Ukraine National Academy of Science, Palladin av., 32, Kiev 03680, Ukraine, e-mail: korchagin@karbon.com.ua 4Ltd. \u201cGeophysics-777\u201d, Kiev, Ukraine The results of the application of technology of frequency-resonance processing and interpretation of remote sensing (RS) data and geoelectric methods of forming short-pulsed electromagnetic field (FSPEF) and vertical electric-resonance sounding (VERS) (FSPEF-VERS express-technology) for the hydrocarbons accumulation searching on three prospect area (\u201cSouth\u201d, \u201cWest\u201d, \u201cNorth\u201d) in the different parts of the Ukrainian crystalline shield are analyzed. The anomalous zone of the \u201coil reservoir\u201d, \u201ccondensate reservoir\u201d and \u201cgas reservoir\u201d type was detected and mapped within all investigated areas by the remote sensing data processing. These anomalies were confirmed and detailed by the FSPEF survey. The bedding depths of the anomalous polarized layers (APL) of oil, gas and gas-condensate type were determined by VERS sounding within anomalous zone. The projected resources of gas, condensate and oil have been estimated for all investigated plots by the results of detailed studies. The site \u201cNorth\u201d is recommended for priority drilling. The optimal area for exploratory well laying was highlighted within it. The investigation results show that mobile technologies can be used for exploration and prospecting the hydrocarbon accumulations in crystalline massifs and tectonic fracture (fault) zones of the crystalline basement. The operative assessment of petroleum potential of insufficiently studied sites and areas in different regions of Ukraine can be made with mobile geophysical technologies using. The used mobile methods works within the framework of the \u201csubstantial\u201d paradigm of geological and geophysical studies, the essence of which is \u201cdirect\u201d searching for a particular substance such as oil, gas, gold, silver, platinum, zinc, iron, water, etc.\u00a0 FSPEF method and technology of remote sensing data processing allow to detect and map operatively the anomalous zones of the \u201coil accumulation\u201d and (or) \u201cgas accumulation\u201d type. The bedding depths of the anomalous polarized layers (APL) of gas and gas-condensate type may be determined by VERS sounding within one anomalous areas. Mobile technology allows to get a new (additional) and, more importantly, independent information on the petroleum potential of the surveyed areas. This information, in conjunction with available geological and geophysical materials can be used to select the objects for detailed studying and primary drilling. Keywords: Geoelectric survey, electric-resonance sounding, anomaly \u201cdeposit\u201d type, gas, gas condensate, fault zone, crystalline massif, basement, satellite data, technology, direct searching, processing and interpretation. The full text of papers\u00a0 References Bembel R.M., Megerya V.M., Bembel S.R. Geosolitony: funktsional\u2019naya sistema Zemli, kontseptsiya razvedki i razrabotki mestorozhdeniy uglevodorodov [Geosolitony: functional system of the Earth, the concept of exploration and exploitation of hydrocarbons]. Tyumen\u2019: Vektor Buk, 2003, 344 p. Valyaev B.M. Priroda i osobennosti prostranstvennogo rasprostranenija netradicionnyh resursov uglevodorodov i ih skoplenij [Nature and characteristics of the spatial distribution of unconventional hydrocarbon resources and their accumulations]. Gazovaja promyshlennost\u2019. Netradicionnye resursy nefti i gaza &#8211; prilozhenie k zhurnalu [Gas industry, Unconventional oil and gas resources &#8211; supplement to the journal], 2012, pp. 9-16. Gavrilov V.P. Novyy vozmozhnyy neftegazonosnyy etazh zemnoy kory [Possible new oil and gas of the Earth crust]. ROGEKH. Rossiyskie neftegazovye tekhnologii [ROGEH. Russian oil and gas technology], 2006, no. 7, pp. 26-30. Karasevich A.M., Zemtsova D.P., Nikitin A.A. Novye tehnologii geofizicheskih issledovanij pri poiskah i prognoze uglevodorodnogo syr\u2019ja [New technologies geophysical research for the hydrocarbons search and forecasting]. Moscow: Strahovoe revju, 2010, 140 p. Karpov V.A. Sostojanie i perspektivy razvitija neftegazopoiskovyh rabot v Zapadnoj Sibiri [Status and prospects of oil and gas exploration in Western Siberia]. Geologija nefti i gaza [Oil and gas geology], 2012, no. 3, pp. 2-6. Kovalev N.I., Gokh V.A., Ivashchenko P.N., Soldatova S.V. Opyt prakticheskogo ispol\u2019zovaniya apparatury kompleksa \u201cPoisk\u201d dlya obnaruzheniya i okonturivaniya uglevodorodnykh mestorozhdeniy [Experience in the practical use of the \u201cPoisk\u201d equipment complex to detect and delineate hydrocarbon deposits]. Geoinformatika [Geoinformatics (Ukraine)], 2010, no 4, pp. 46-51. Krinin V.A., Proskuryakov A.L., Piavko A.M., Chervoniy N.P., Levashov S.P. Primenenie geoelektricheskikh metodov SKIP-VERZ dlya poiskov nefti i gaza v rayone Vankorskogo mestorozhdeniya [Application of FSPEF-VERS geoelectric methods for oil and gas prospecting in the Vankor oil-and-gas field area]. Neftjanoe hozjajstvo [Oil industry], 2011, no. 11, pp. 18-21. Kusov B.R. Genezis nekotorykh uglerodsoderzhashchikh poleznykh iskopaemykh (Ot metana do almaza): Monografiya. Izdanie vtoroe, dopolnennoe [Genesis some carbonaceous minerals (From methane to diamond): Monograph. Second edition, expanded]. Vladikavkaz: IPO SOIGSI, 2011, 195 p. Levashov S.P., Yakymchuk M.A. Korchagin I.N. Elektrorezonansnoe zondirovanie i ego ispol\u2019zovanie dlya resheniya zadach ekologii i inzhenernoy geologii [Electric-resonance sounding method and its application for solving the environmental and engineering geology problems]. Geologicheskiy zhurnal [Geological journal], 2003, no. 4, pp. 24-28. Levashov S.P., Yakymchuk N.A., Korchagin I.N., Degtyar R.V., Bozhezha D.N. Obnaruzhenie i kartirovanie geoelektricheskimi metodami zon povyshennogo gazonasyshcheniya na ugol\u2019nykh shakhtakh [Detection and mapping by geoelectric methods of zones with high gas saturation on the coal mines]. Geofizika, EAGO [Geophysika, EAGO], 2006, no. 2, pp. 58-63. Levashov S.P., Yakymchuk N.A., Korchagin I.N. Ekspress-tekhnologiya \u201cpryamykh\u201d poiskov i razvedki skopleniy uglevodorodov geoelektricheskimi metodami: rezul\u2019taty prakticheskogo primeneniya v 2001-2005 gg. [Express technology of \u201cdirect\u201d prospecting and exploration for hydrocarbon accumulations by geoelectric methods: results of practical application in 2001-2005]. Geoinformatika [Geoinformatics (Ukraine)], 2006,no. 1, pp. 31-43. Levashov S.P., Yakymchuk N.A., Korchagin I.N., Razin D.V., Yuzlenko A.T. O vozmozhnosti kartirovaniya geoelektricheskimi metodami skopleniy uglevodorodov v kristallicheskikh porodakh [On the possibility of hydrocarbons accumulations mapping in crystalline rocks by geoelectric methods]. Geoinformatika [Geoinformatics (Ukraine)], 2010, no.\u00a01, pp. 22-32. Levashov S.P., Yakymchuk N.A., Korchagin I.N. Novye vozmozhnosti operativnoj ocenki perspektiv neftegazonosnosti razvedochnyh ploshhadej, trudnodostupnyh i udalennyh territorij, licenzionnyh blokov [New opportunities for rapid assessment of the hydrocarbon potential of exploration areas, difficult of access and remote areas, and license blocks]. Geoinformatika [Geoinformatics (Ukraine)], 2010, no. 3, pp. 22-43. Levashov S.P., Yakymchuk N.A., Korchagin I.N. Ocenka otnositel\u2019nyh znachenij plastovogo [&hellip;]<\/p>\n","protected":false},"author":2,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"open","ping_status":"open","template":"","meta":{"footnotes":""},"class_list":["post-2171","page","type-page","status-publish","hentry"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.6 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>(\u0423\u043a\u0440\u0430\u0457\u043d\u0441\u044c\u043a\u0430) Geoinformatika 2014; 2(50) : 5-21 - \u0421\u0430\u0439\u0442 \u0436\u0443\u0440\u043d\u0430\u043b\u0443 \u00ab\u0413\u0435\u043e\u0456\u043d\u0444\u043e\u0440\u043c\u0430\u0442\u0438\u043a\u0430\u00bb<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"http:\/\/www.geology.com.ua\/en\/2171-2\/\" \/>\n<meta property=\"og:locale\" content=\"en_US\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"(\u0423\u043a\u0440\u0430\u0457\u043d\u0441\u044c\u043a\u0430) Geoinformatika 2014; 2(50) : 5-21 - \u0421\u0430\u0439\u0442 \u0436\u0443\u0440\u043d\u0430\u043b\u0443 \u00ab\u0413\u0435\u043e\u0456\u043d\u0444\u043e\u0440\u043c\u0430\u0442\u0438\u043a\u0430\u00bb\" \/>\n<meta property=\"og:description\" content=\"Geoinformatika 2014; 2(50) : 5-21\u00a0 (in Russian) RESULTS OF DETAILED GEOPHYSICAL INVESTIGATIONS\u00a0FOR THE HYDROCARBONS ACCUMULATIONS EXPLORATION\u00a0WITHIN UKRAINIAN SHIELD S.P. Levashov1,2, N.A. Yakymchuk1,2, I.N. Korchagin3, D.N. Bozhezha2, D.R. Shust4 1Institute of Applied Problems of Ecology, Geophysics and Geochemistry,Laboratorny lane, 1, Kyiv 01133, Ukraine 2Management and Marketing Center of Institute of Geological Science NAS Ukraine, Laboratorny lane, 1, Kyiv 01133, Ukraine 3Institute of Geophysics of Ukraine National Academy of Science, Palladin av., 32, Kiev 03680, Ukraine, e-mail: korchagin@karbon.com.ua 4Ltd. \u201cGeophysics-777\u201d, Kiev, Ukraine The results of the application of technology of frequency-resonance processing and interpretation of remote sensing (RS) data and geoelectric methods of forming short-pulsed electromagnetic field (FSPEF) and vertical electric-resonance sounding (VERS) (FSPEF-VERS express-technology) for the hydrocarbons accumulation searching on three prospect area (\u201cSouth\u201d, \u201cWest\u201d, \u201cNorth\u201d) in the different parts of the Ukrainian crystalline shield are analyzed. The anomalous zone of the \u201coil reservoir\u201d, \u201ccondensate reservoir\u201d and \u201cgas reservoir\u201d type was detected and mapped within all investigated areas by the remote sensing data processing. These anomalies were confirmed and detailed by the FSPEF survey. The bedding depths of the anomalous polarized layers (APL) of oil, gas and gas-condensate type were determined by VERS sounding within anomalous zone. The projected resources of gas, condensate and oil have been estimated for all investigated plots by the results of detailed studies. The site \u201cNorth\u201d is recommended for priority drilling. The optimal area for exploratory well laying was highlighted within it. The investigation results show that mobile technologies can be used for exploration and prospecting the hydrocarbon accumulations in crystalline massifs and tectonic fracture (fault) zones of the crystalline basement. The operative assessment of petroleum potential of insufficiently studied sites and areas in different regions of Ukraine can be made with mobile geophysical technologies using. The used mobile methods works within the framework of the \u201csubstantial\u201d paradigm of geological and geophysical studies, the essence of which is \u201cdirect\u201d searching for a particular substance such as oil, gas, gold, silver, platinum, zinc, iron, water, etc.\u00a0 FSPEF method and technology of remote sensing data processing allow to detect and map operatively the anomalous zones of the \u201coil accumulation\u201d and (or) \u201cgas accumulation\u201d type. The bedding depths of the anomalous polarized layers (APL) of gas and gas-condensate type may be determined by VERS sounding within one anomalous areas. Mobile technology allows to get a new (additional) and, more importantly, independent information on the petroleum potential of the surveyed areas. This information, in conjunction with available geological and geophysical materials can be used to select the objects for detailed studying and primary drilling. Keywords: Geoelectric survey, electric-resonance sounding, anomaly \u201cdeposit\u201d type, gas, gas condensate, fault zone, crystalline massif, basement, satellite data, technology, direct searching, processing and interpretation. The full text of papers\u00a0 References Bembel R.M., Megerya V.M., Bembel S.R. Geosolitony: funktsional\u2019naya sistema Zemli, kontseptsiya razvedki i razrabotki mestorozhdeniy uglevodorodov [Geosolitony: functional system of the Earth, the concept of exploration and exploitation of hydrocarbons]. Tyumen\u2019: Vektor Buk, 2003, 344 p. Valyaev B.M. Priroda i osobennosti prostranstvennogo rasprostranenija netradicionnyh resursov uglevodorodov i ih skoplenij [Nature and characteristics of the spatial distribution of unconventional hydrocarbon resources and their accumulations]. Gazovaja promyshlennost\u2019. Netradicionnye resursy nefti i gaza &#8211; prilozhenie k zhurnalu [Gas industry, Unconventional oil and gas resources &#8211; supplement to the journal], 2012, pp. 9-16. Gavrilov V.P. Novyy vozmozhnyy neftegazonosnyy etazh zemnoy kory [Possible new oil and gas of the Earth crust]. ROGEKH. Rossiyskie neftegazovye tekhnologii [ROGEH. Russian oil and gas technology], 2006, no. 7, pp. 26-30. Karasevich A.M., Zemtsova D.P., Nikitin A.A. Novye tehnologii geofizicheskih issledovanij pri poiskah i prognoze uglevodorodnogo syr\u2019ja [New technologies geophysical research for the hydrocarbons search and forecasting]. Moscow: Strahovoe revju, 2010, 140 p. Karpov V.A. Sostojanie i perspektivy razvitija neftegazopoiskovyh rabot v Zapadnoj Sibiri [Status and prospects of oil and gas exploration in Western Siberia]. Geologija nefti i gaza [Oil and gas geology], 2012, no. 3, pp. 2-6. Kovalev N.I., Gokh V.A., Ivashchenko P.N., Soldatova S.V. Opyt prakticheskogo ispol\u2019zovaniya apparatury kompleksa \u201cPoisk\u201d dlya obnaruzheniya i okonturivaniya uglevodorodnykh mestorozhdeniy [Experience in the practical use of the \u201cPoisk\u201d equipment complex to detect and delineate hydrocarbon deposits]. Geoinformatika [Geoinformatics (Ukraine)], 2010, no 4, pp. 46-51. Krinin V.A., Proskuryakov A.L., Piavko A.M., Chervoniy N.P., Levashov S.P. Primenenie geoelektricheskikh metodov SKIP-VERZ dlya poiskov nefti i gaza v rayone Vankorskogo mestorozhdeniya [Application of FSPEF-VERS geoelectric methods for oil and gas prospecting in the Vankor oil-and-gas field area]. Neftjanoe hozjajstvo [Oil industry], 2011, no. 11, pp. 18-21. Kusov B.R. Genezis nekotorykh uglerodsoderzhashchikh poleznykh iskopaemykh (Ot metana do almaza): Monografiya. Izdanie vtoroe, dopolnennoe [Genesis some carbonaceous minerals (From methane to diamond): Monograph. Second edition, expanded]. Vladikavkaz: IPO SOIGSI, 2011, 195 p. Levashov S.P., Yakymchuk M.A. Korchagin I.N. Elektrorezonansnoe zondirovanie i ego ispol\u2019zovanie dlya resheniya zadach ekologii i inzhenernoy geologii [Electric-resonance sounding method and its application for solving the environmental and engineering geology problems]. Geologicheskiy zhurnal [Geological journal], 2003, no. 4, pp. 24-28. Levashov S.P., Yakymchuk N.A., Korchagin I.N., Degtyar R.V., Bozhezha D.N. Obnaruzhenie i kartirovanie geoelektricheskimi metodami zon povyshennogo gazonasyshcheniya na ugol\u2019nykh shakhtakh [Detection and mapping by geoelectric methods of zones with high gas saturation on the coal mines]. Geofizika, EAGO [Geophysika, EAGO], 2006, no. 2, pp. 58-63. Levashov S.P., Yakymchuk N.A., Korchagin I.N. Ekspress-tekhnologiya \u201cpryamykh\u201d poiskov i razvedki skopleniy uglevodorodov geoelektricheskimi metodami: rezul\u2019taty prakticheskogo primeneniya v 2001-2005 gg. [Express technology of \u201cdirect\u201d prospecting and exploration for hydrocarbon accumulations by geoelectric methods: results of practical application in 2001-2005]. Geoinformatika [Geoinformatics (Ukraine)], 2006,no. 1, pp. 31-43. Levashov S.P., Yakymchuk N.A., Korchagin I.N., Razin D.V., Yuzlenko A.T. O vozmozhnosti kartirovaniya geoelektricheskimi metodami skopleniy uglevodorodov v kristallicheskikh porodakh [On the possibility of hydrocarbons accumulations mapping in crystalline rocks by geoelectric methods]. Geoinformatika [Geoinformatics (Ukraine)], 2010, no.\u00a01, pp. 22-32. Levashov S.P., Yakymchuk N.A., Korchagin I.N. Novye vozmozhnosti operativnoj ocenki perspektiv neftegazonosnosti razvedochnyh ploshhadej, trudnodostupnyh i udalennyh territorij, licenzionnyh blokov [New opportunities for rapid assessment of the hydrocarbon potential of exploration areas, difficult of access and remote areas, and license blocks]. Geoinformatika [Geoinformatics (Ukraine)], 2010, no. 3, pp. 22-43. Levashov S.P., Yakymchuk N.A., Korchagin I.N. Ocenka otnositel\u2019nyh znachenij plastovogo [&hellip;]\" \/>\n<meta property=\"og:url\" content=\"http:\/\/www.geology.com.ua\/en\/2171-2\/\" \/>\n<meta property=\"og:site_name\" content=\"\u0421\u0430\u0439\u0442 \u0436\u0443\u0440\u043d\u0430\u043b\u0443 \u00ab\u0413\u0435\u043e\u0456\u043d\u0444\u043e\u0440\u043c\u0430\u0442\u0438\u043a\u0430\u00bb\" \/>\n<meta property=\"article:modified_time\" content=\"2016-06-07T09:30:35+00:00\" \/>\n<meta name=\"twitter:label1\" content=\"Est. reading time\" \/>\n\t<meta name=\"twitter:data1\" content=\"8 minutes\" \/>\n<script type=\"application\/ld+json\" class=\"yoast-schema-graph\">{\"@context\":\"https:\\\/\\\/schema.org\",\"@graph\":[{\"@type\":\"WebPage\",\"@id\":\"http:\\\/\\\/www.geology.com.ua\\\/en\\\/2171-2\\\/\",\"url\":\"http:\\\/\\\/www.geology.com.ua\\\/en\\\/2171-2\\\/\",\"name\":\"(\u0423\u043a\u0440\u0430\u0457\u043d\u0441\u044c\u043a\u0430) Geoinformatika 2014; 2(50) : 5-21 - \u0421\u0430\u0439\u0442 \u0436\u0443\u0440\u043d\u0430\u043b\u0443 \u00ab\u0413\u0435\u043e\u0456\u043d\u0444\u043e\u0440\u043c\u0430\u0442\u0438\u043a\u0430\u00bb\",\"isPartOf\":{\"@id\":\"http:\\\/\\\/www.geology.com.ua\\\/en\\\/#website\"},\"datePublished\":\"2015-02-02T09:21:05+00:00\",\"dateModified\":\"2016-06-07T09:30:35+00:00\",\"breadcrumb\":{\"@id\":\"http:\\\/\\\/www.geology.com.ua\\\/en\\\/2171-2\\\/#breadcrumb\"},\"inLanguage\":\"en-US\",\"potentialAction\":[{\"@type\":\"ReadAction\",\"target\":[[\"http:\\\/\\\/www.geology.com.ua\\\/en\\\/2171-2\\\/\"]]}]},{\"@type\":\"BreadcrumbList\",\"@id\":\"http:\\\/\\\/www.geology.com.ua\\\/en\\\/2171-2\\\/#breadcrumb\",\"itemListElement\":[{\"@type\":\"ListItem\",\"position\":1,\"name\":\"Home\",\"item\":\"http:\\\/\\\/www.geology.com.ua\\\/en\\\/\"},{\"@type\":\"ListItem\",\"position\":2,\"name\":\"(\u0423\u043a\u0440\u0430\u0457\u043d\u0441\u044c\u043a\u0430) Geoinformatika 2014; 2(50) : 5-21\"}]},{\"@type\":\"WebSite\",\"@id\":\"http:\\\/\\\/www.geology.com.ua\\\/en\\\/#website\",\"url\":\"http:\\\/\\\/www.geology.com.ua\\\/en\\\/\",\"name\":\"\u0421\u0430\u0439\u0442 \u0436\u0443\u0440\u043d\u0430\u043b\u0443 \u00ab\u0413\u0435\u043e\u0456\u043d\u0444\u043e\u0440\u043c\u0430\u0442\u0438\u043a\u0430\u00bb\",\"description\":\"\u0426\u0435\u043d\u0442\u0440 \u043c\u0435\u043d\u0435\u0434\u0436\u043c\u0435\u043d\u0442\u0443 \u0442\u0430 \u043c\u0430\u0440\u043a\u0435\u0442\u0438\u043d\u0433\u0443 \u0432 \u0433\u0430\u043b\u0443\u0437\u0456 \u043d\u0430\u0443\u043a \u043f\u0440\u043e \u0417\u0435\u043c\u043b\u044e\",\"potentialAction\":[{\"@type\":\"SearchAction\",\"target\":{\"@type\":\"EntryPoint\",\"urlTemplate\":\"http:\\\/\\\/www.geology.com.ua\\\/en\\\/?s={search_term_string}\"},\"query-input\":{\"@type\":\"PropertyValueSpecification\",\"valueRequired\":true,\"valueName\":\"search_term_string\"}}],\"inLanguage\":\"en-US\"}]}<\/script>\n<!-- \/ Yoast SEO plugin. -->","yoast_head_json":{"title":"(\u0423\u043a\u0440\u0430\u0457\u043d\u0441\u044c\u043a\u0430) Geoinformatika 2014; 2(50) : 5-21 - \u0421\u0430\u0439\u0442 \u0436\u0443\u0440\u043d\u0430\u043b\u0443 \u00ab\u0413\u0435\u043e\u0456\u043d\u0444\u043e\u0440\u043c\u0430\u0442\u0438\u043a\u0430\u00bb","robots":{"index":"index","follow":"follow","max-snippet":"max-snippet:-1","max-image-preview":"max-image-preview:large","max-video-preview":"max-video-preview:-1"},"canonical":"http:\/\/www.geology.com.ua\/en\/2171-2\/","og_locale":"en_US","og_type":"article","og_title":"(\u0423\u043a\u0440\u0430\u0457\u043d\u0441\u044c\u043a\u0430) Geoinformatika 2014; 2(50) : 5-21 - \u0421\u0430\u0439\u0442 \u0436\u0443\u0440\u043d\u0430\u043b\u0443 \u00ab\u0413\u0435\u043e\u0456\u043d\u0444\u043e\u0440\u043c\u0430\u0442\u0438\u043a\u0430\u00bb","og_description":"Geoinformatika 2014; 2(50) : 5-21\u00a0 (in Russian) RESULTS OF DETAILED GEOPHYSICAL INVESTIGATIONS\u00a0FOR THE HYDROCARBONS ACCUMULATIONS EXPLORATION\u00a0WITHIN UKRAINIAN SHIELD S.P. Levashov1,2, N.A. Yakymchuk1,2, I.N. Korchagin3, D.N. Bozhezha2, D.R. Shust4 1Institute of Applied Problems of Ecology, Geophysics and Geochemistry,Laboratorny lane, 1, Kyiv 01133, Ukraine 2Management and Marketing Center of Institute of Geological Science NAS Ukraine, Laboratorny lane, 1, Kyiv 01133, Ukraine 3Institute of Geophysics of Ukraine National Academy of Science, Palladin av., 32, Kiev 03680, Ukraine, e-mail: korchagin@karbon.com.ua 4Ltd. \u201cGeophysics-777\u201d, Kiev, Ukraine The results of the application of technology of frequency-resonance processing and interpretation of remote sensing (RS) data and geoelectric methods of forming short-pulsed electromagnetic field (FSPEF) and vertical electric-resonance sounding (VERS) (FSPEF-VERS express-technology) for the hydrocarbons accumulation searching on three prospect area (\u201cSouth\u201d, \u201cWest\u201d, \u201cNorth\u201d) in the different parts of the Ukrainian crystalline shield are analyzed. The anomalous zone of the \u201coil reservoir\u201d, \u201ccondensate reservoir\u201d and \u201cgas reservoir\u201d type was detected and mapped within all investigated areas by the remote sensing data processing. These anomalies were confirmed and detailed by the FSPEF survey. The bedding depths of the anomalous polarized layers (APL) of oil, gas and gas-condensate type were determined by VERS sounding within anomalous zone. The projected resources of gas, condensate and oil have been estimated for all investigated plots by the results of detailed studies. The site \u201cNorth\u201d is recommended for priority drilling. The optimal area for exploratory well laying was highlighted within it. The investigation results show that mobile technologies can be used for exploration and prospecting the hydrocarbon accumulations in crystalline massifs and tectonic fracture (fault) zones of the crystalline basement. The operative assessment of petroleum potential of insufficiently studied sites and areas in different regions of Ukraine can be made with mobile geophysical technologies using. The used mobile methods works within the framework of the \u201csubstantial\u201d paradigm of geological and geophysical studies, the essence of which is \u201cdirect\u201d searching for a particular substance such as oil, gas, gold, silver, platinum, zinc, iron, water, etc.\u00a0 FSPEF method and technology of remote sensing data processing allow to detect and map operatively the anomalous zones of the \u201coil accumulation\u201d and (or) \u201cgas accumulation\u201d type. The bedding depths of the anomalous polarized layers (APL) of gas and gas-condensate type may be determined by VERS sounding within one anomalous areas. Mobile technology allows to get a new (additional) and, more importantly, independent information on the petroleum potential of the surveyed areas. This information, in conjunction with available geological and geophysical materials can be used to select the objects for detailed studying and primary drilling. Keywords: Geoelectric survey, electric-resonance sounding, anomaly \u201cdeposit\u201d type, gas, gas condensate, fault zone, crystalline massif, basement, satellite data, technology, direct searching, processing and interpretation. The full text of papers\u00a0 References Bembel R.M., Megerya V.M., Bembel S.R. Geosolitony: funktsional\u2019naya sistema Zemli, kontseptsiya razvedki i razrabotki mestorozhdeniy uglevodorodov [Geosolitony: functional system of the Earth, the concept of exploration and exploitation of hydrocarbons]. Tyumen\u2019: Vektor Buk, 2003, 344 p. Valyaev B.M. Priroda i osobennosti prostranstvennogo rasprostranenija netradicionnyh resursov uglevodorodov i ih skoplenij [Nature and characteristics of the spatial distribution of unconventional hydrocarbon resources and their accumulations]. Gazovaja promyshlennost\u2019. Netradicionnye resursy nefti i gaza &#8211; prilozhenie k zhurnalu [Gas industry, Unconventional oil and gas resources &#8211; supplement to the journal], 2012, pp. 9-16. Gavrilov V.P. Novyy vozmozhnyy neftegazonosnyy etazh zemnoy kory [Possible new oil and gas of the Earth crust]. ROGEKH. Rossiyskie neftegazovye tekhnologii [ROGEH. Russian oil and gas technology], 2006, no. 7, pp. 26-30. Karasevich A.M., Zemtsova D.P., Nikitin A.A. Novye tehnologii geofizicheskih issledovanij pri poiskah i prognoze uglevodorodnogo syr\u2019ja [New technologies geophysical research for the hydrocarbons search and forecasting]. Moscow: Strahovoe revju, 2010, 140 p. Karpov V.A. Sostojanie i perspektivy razvitija neftegazopoiskovyh rabot v Zapadnoj Sibiri [Status and prospects of oil and gas exploration in Western Siberia]. Geologija nefti i gaza [Oil and gas geology], 2012, no. 3, pp. 2-6. Kovalev N.I., Gokh V.A., Ivashchenko P.N., Soldatova S.V. Opyt prakticheskogo ispol\u2019zovaniya apparatury kompleksa \u201cPoisk\u201d dlya obnaruzheniya i okonturivaniya uglevodorodnykh mestorozhdeniy [Experience in the practical use of the \u201cPoisk\u201d equipment complex to detect and delineate hydrocarbon deposits]. Geoinformatika [Geoinformatics (Ukraine)], 2010, no 4, pp. 46-51. Krinin V.A., Proskuryakov A.L., Piavko A.M., Chervoniy N.P., Levashov S.P. Primenenie geoelektricheskikh metodov SKIP-VERZ dlya poiskov nefti i gaza v rayone Vankorskogo mestorozhdeniya [Application of FSPEF-VERS geoelectric methods for oil and gas prospecting in the Vankor oil-and-gas field area]. Neftjanoe hozjajstvo [Oil industry], 2011, no. 11, pp. 18-21. Kusov B.R. Genezis nekotorykh uglerodsoderzhashchikh poleznykh iskopaemykh (Ot metana do almaza): Monografiya. Izdanie vtoroe, dopolnennoe [Genesis some carbonaceous minerals (From methane to diamond): Monograph. Second edition, expanded]. Vladikavkaz: IPO SOIGSI, 2011, 195 p. Levashov S.P., Yakymchuk M.A. Korchagin I.N. Elektrorezonansnoe zondirovanie i ego ispol\u2019zovanie dlya resheniya zadach ekologii i inzhenernoy geologii [Electric-resonance sounding method and its application for solving the environmental and engineering geology problems]. Geologicheskiy zhurnal [Geological journal], 2003, no. 4, pp. 24-28. Levashov S.P., Yakymchuk N.A., Korchagin I.N., Degtyar R.V., Bozhezha D.N. Obnaruzhenie i kartirovanie geoelektricheskimi metodami zon povyshennogo gazonasyshcheniya na ugol\u2019nykh shakhtakh [Detection and mapping by geoelectric methods of zones with high gas saturation on the coal mines]. Geofizika, EAGO [Geophysika, EAGO], 2006, no. 2, pp. 58-63. Levashov S.P., Yakymchuk N.A., Korchagin I.N. Ekspress-tekhnologiya \u201cpryamykh\u201d poiskov i razvedki skopleniy uglevodorodov geoelektricheskimi metodami: rezul\u2019taty prakticheskogo primeneniya v 2001-2005 gg. [Express technology of \u201cdirect\u201d prospecting and exploration for hydrocarbon accumulations by geoelectric methods: results of practical application in 2001-2005]. Geoinformatika [Geoinformatics (Ukraine)], 2006,no. 1, pp. 31-43. Levashov S.P., Yakymchuk N.A., Korchagin I.N., Razin D.V., Yuzlenko A.T. O vozmozhnosti kartirovaniya geoelektricheskimi metodami skopleniy uglevodorodov v kristallicheskikh porodakh [On the possibility of hydrocarbons accumulations mapping in crystalline rocks by geoelectric methods]. Geoinformatika [Geoinformatics (Ukraine)], 2010, no.\u00a01, pp. 22-32. Levashov S.P., Yakymchuk N.A., Korchagin I.N. Novye vozmozhnosti operativnoj ocenki perspektiv neftegazonosnosti razvedochnyh ploshhadej, trudnodostupnyh i udalennyh territorij, licenzionnyh blokov [New opportunities for rapid assessment of the hydrocarbon potential of exploration areas, difficult of access and remote areas, and license blocks]. Geoinformatika [Geoinformatics (Ukraine)], 2010, no. 3, pp. 22-43. Levashov S.P., Yakymchuk N.A., Korchagin I.N. 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