Geothermal conditions of hydrocarbon formation in the South Caspian basin
الموضوعات :
Vagif Kerimov
1
,
Michael Rachinsky
2
,
Rustam Mustaev
3
,
Uliana Serikova
4
1 - Department of geology and exploration of hydrocarbon deposits, Russian State Geological Prospecting University
2 - Department of geology and exploration of hydrocarbon deposits, Russian State Geological Prospecting University
3 - Department of geology and exploration of hydrocarbon deposits, Russian State Geological Prospecting University
4 - Department of geology and exploration of hydrocarbon deposits, Russian State Geological Prospecting University
تاريخ الإرسال : 19 الخميس , ربيع الأول, 1439
تاريخ التأكيد : 03 الخميس , محرم, 1440
تاريخ الإصدار : 15 الأحد , رجب, 1439
الکلمات المفتاحية:
Local structures,
Earth’s depth heat,
Geotemperature regime,
Basin modelling,
Oil and Gas field,
South Caspian basin,
ملخص المقالة :
The geotemperature factor of the subsurface is among the important reasons for defining hydrocarbon generation conditions, which characterize migration processes and the accumulation of oil and gas in sedimentary rocks. It also has an application aspect, which is very important for potential oil and gas forecasts and the selection of exploration plays. It provides a practical capability to use the data of disruptions in the regional and local geotemperature field for tracking hydrocarbon migration paths, determining discharge zones, areas and foci of geo-fluid-dynamic systems. This is one reason why temperature conditions in the geologic section of oil and gas regions, areas, zones and prospects may be weighty arguments in oil and gas exploration. The study results may benefit planning and conducting exploratory operations in other basins of mobile belts, similar to the studied ones in their tectonotype.
المصادر:
Aliyeva Е (2003) A model of the hydrocarbon migration and accumulation and its application for geologic exploration in the deep-water portion of the Caspian Sea, Abstracts of the reports at 65 Conf. EAGE, Stavanger.
Borger HO (1952) AAPG Bulletin 36.
Carlson AJ (1930) Geothermal variation in oil fields of Los Angeles Basin, California, Bull. AAPG. 14:8
Dmirtiyevsky АN, Volodin IА (2006) Formation and dynamics of the energy-active zones in thre geologic medium, DRAN 411: 395–400.
Förster A, Förster HJ, Krentz O (2016) Exploration of the enhanced geothermal system (EGS) potential of crystalline rocks for district heating (Elbe Zone, Saxony, Germany), International Journal of Earth Sciences 1-13.
Geodekian AА (1968) Geologo-geochemical specifics of oil and gas formation in the South Caspian depression. Nedra.
Guliev IS, Kerimov VYu, Mustaev RN (2016) Fundamental problems of oil and gas potential of the South Caspian Basin, Doklady Earth Sciences 471(1):1109-1112.
Guliyev IS (1999) Energized sedimentary complexes and their role in dynamic processes and and the formation of oil and gas fields, Proc. Of International Conference-seminar Neotectonics and its effect on the formation and placement of oil and gas accumulations, 44–52.
Guliyev IS, Kadirov FА, (2000) On an intraformational hydrocarbon migration mechanism, DAN Russia 373:4:506–509.
Jones P (1975) Geothermal resources of the North-Mexican Basin. Study and utilization of geothermal resources. Moscow, Mir.
Kerimov VYu, Mustaev RN, Dmitrievsky SS, Zaitsev VA (2016a) Evaluation of secondary filtration parameters of low-permeability shale strata of the Maikop series of Central and Eastern Ciscaucasia by the results of geomechanics modeling, Neftyanoe Khozyaystvo - Oil Industry 9:18-21.
Kerimov VYu, Mustaev RN, Dmitrievsky SS, Yandarbiev NSh, Kozlova EV (2015a) The shale hydrocarbons prospects in the low permeability khadum formation of the Pre-Caucasus, Neftyanoe Khozyaystvo - Oil Industry 10:50-53.
Kerimov VYu, Mustaev RN, Serikova US, Lavrenova EA, Kruglyakova MV (2015b) Hydrocarbon generation-accumulative system on the territory of Crimea Peninsula and adjacent Azov and Black Seas, Neftyanoe Khozyaystvo - Oil Industry 3:56-60.
Kerimov VYu, Osipov AV, Mustaev RN, Monakova AS (2014a) Modeling of petroleum systems in regions with complex geological structure, 16th Science and Applied Research Conference on Oil and Gas Geological Exploration and Development, Geomodel.
Kerimov VYu, Rachinsky MZ (2016b) Geo-fluid dynamic concept of hydrocarbons accumulation in natural reservoirs, Doklady Earth Sciences 471(1): 1123–1125.
Kerimov VYu, Shilov GYa, Mustaev RN, Dmitrievskiy SS (2016c) Thermobaric conditions of hydrocarbons accumulations formation in the low-permeability oil reservoirs of Khadum suite of the Pre-Caucasus, Neftyanoe Khozyaystvo - Oil Industry 2:8-11.
Kerimov VYu, Serikova US, Mustayev RN, Guliyev IS (2014b) Deep oil-and-gas content of South Caspian Basin, Neftyanoe khozyaystvo - Oil Industry 5:50-54.
Mekhtiyev ShF, Geodekian АА, Rachinsky MZ (1973) Geothermal regime in the South Caspian Depression. Soviet Geology 3.
Mekhtiyev ShF, Rachinsky MZ (1967) On possible mechanism of oil and gas accumulations’ formation and causes of regular variation of oil and water properties in the Apsheron oil-gas generation and oil-gas accumulation region, DAN Azerb. SSR 5:12.
Mekhtiyev ShF, Yakubov AA, Rachinsky MZ (1968) Geothermal indicators of hydrocarbon migration and formation water flow in the Productive Sequence of the Apsheron Oil and Gas area. Geology Oil and Gas 6.
Pelet R (1985) Evaluation quantitative des produits formés lors de l’évolution géochimique de la matiĕre organique. Rev. d’Institut Francais du Pétrole 40:551-556.
Powers MC (1976) Fluid-release mechanisms in compacting marine mudrocks and their importance in oil exploration, Bull. AAPG 51:7.
Rachinsky MZ, Kerimov VYu (2015) Fluid dynamics of oil and gas reservoirs, Scrivener Publishing Wiley, USA.
Rachinsky MZ, Kuliyev KG (1984) On the nature of hydrochemical inversion in the South Caspian Depression. News of the Universities. Geology and Exploration 12.
Rachinsky MZ, Muradian VM (1983) Thermobaric formation and placement model of Oil and Gas occurrences in the South Caspian Depression. In: Issues of offshore drilling of Oil and Gas wells. Riga, VNIImorgeo.
Renz GG, Oldenburg G, Dalmes KF et al. (1961) East Venezuela Basin. Distribution of oil. Moscow, Gostoptekhizdat.
Salle K, Debizer Zh (1976) Formation of oil accumulations. Moscow, Nedra.
Smirnov YaB (1972) Earth’s heat flow and issues fold-belt energy, Moscow, Nauka.
Van-Orstrand CE (1934) Temperature gradients. Problems of Petroleum Geology. American Association of Petroleum Geologists. Tulsa.
Van-Orstrand CE (1941) Temperature of the earth in relation to oil location temperature, its measurements and control in science and industry, Reinhold Rubl. Corp.