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Mature Hydrocarbons-rich Waters as Geochemical Evidence of Working Petroleum System of Mamak (Ankara) and Potential Trap Area in the Region

Year 2019, Issue: 17, 244 - 260, 31.12.2019
https://doi.org/10.31590/ejosat.589253

Abstract

This study is made to evaluate the oil and gas potential of the Mamak (Ankara) region with geochemical surveys, geophysical, and tectonic data. The study was conducted in three steps. In the first step, the geological characteristics of the study area from the literature were examined. Thus, the geological data to be required for geochemical analysis and geophysical data evaluations were compiled. In the second step, aeromagnetic and gravity maps of the study area were prepared. As a result of evaluating these data together, a structure that could be a petroleum trap was determined in the study area. In the third stage, total petroleum hydrocarbons (TPH) analyses in the samples taken from the water fountains on and around this determined structure were conducted and the oil and gas potential of the determined structure were evaluated. As a result of this analysis, it has been determined hydrocarbons in all water samples. To determine the source of hydrocarbons in the waters have used organic geochemical methods. The n-alkane hydrocarbons in water samples are mature petroleum hydrocarbons. The mature hydrocarbons are evidence for a working petroleum system in the study area. Due to the presence of waters containing mature petroleum hydrocarbons, the structure in maximum 330 m depth determined in the study area according to gravity and magnetic data has very high potential to become an oil and/or gas reservoir.

References

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  • Aydın, A., 2004. Gravite anomalilerinin doğrudan yorum yöntemleri ile değerlendirilmesi: Hasankale-Horasan bölgesinden bir uygulama. Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi, 11(1), 95-102
  • Banga, T., Capuano, R.M. and Bissada, K.K., 2011. Petroleum generation in the southeast Texas basin: Implications for hydrocarbon occurrence at the South Liberty salt dome. AAPG Bulletin, 95(7), 1257-1291
  • Beyer, J., Jonsson, G., Porte, C., Krahn, M.M. and Ariese, F., 2010. Analytical methods for determining metabolites of polycyclic aromatic hydrocarbon (PAH) pollutants in fish bile: a review. Environ. Toxicol Pharmacol, 30(3), 224-244
  • Bozkurt, E., 1990. Karakaya napı içinde yeni bir Karbonifer ve Permiyen bulgusu. MTA Dergisi, 110, 181-188
  • Bray, E.E. and Evans, E.D., 1961. Distribution of n-paraffins as a clue to recognition of source rocks. Geochim. Cosmochim, Acta. 22, 2-15
  • Bray, E.E. and Evans, E.D., 1965. Hydrocarbons in non-reservoir-rock source beds: Part 1. American Association of Petroleum Geologists Bulletin, 49, 248-257
  • Cai, C. F., Mei, B. W., Li, W. and Fan, G., 1997. Water-rock interaction in Tarim Basin: Constraints from oilfield water geochemistry. Chinese Journal of Geochemistry, 16, 289-303
  • Çelik, M., 1989. Ankara Doğu Kesiminin Mineralojik, Petrografik ve Jeokimyasal Özelliklerinin İncelenmesi. Hacettepe Üniversitesi, Fen Bilimleri Enstitüsü, Doktora Tezi, 253 s.
  • Çorbacıoğlu, H., Kırman, Z.D., Yılmazer, P., Doğan, S., Tokoğlu, E.E., Araç, B., Türesin, F.M., Huvaj, N.Y., Elmacı, A., Türkecan, A.T., Çevik, T., Bahtiyar, İ., Sarıkaya, H., Aydın, MG., Bakırhan, B. ve Yüksel, M., 2018. Hakkâri-Yüksekova-Hisardağı Bölgesi’nden Alınan Su, Emare ve Kayaç Örneklerinin Değerlendirme Raporu. TPAO Rapor No: 4297
  • Didyk, B.M., Simoneit, B.R.T., Brassel, S.C. and Englington, G., 1978. Organic geochemical indicators of paleoenvironmental conditions of sedimentation. Nature, 272, 216-222
  • Ediger, V., 1987. Rift havzalarının jeoloik evrimi ve hidrokarbon potansiyeli. Türkiye 7. Petrol Kongresi, 1-10
  • Feng, Q.Y., and Han, B.P., 2002. Hydrogeochemical simulation of water-rock interaction under water flood recovery in Renqiu oilfield, Hebei Province, China. Chinese Journal of Geochemistry, 21, 156-162
  • Frimmel, A., Oschmann, W. and Schwark, L. 2004. Chemostratigraphy of the Posidonia Black Shale, SW Germany: I. Influence of sea-level variation on organic facies evolution. Chemical Geology, 206, 199-230
  • Gadirov, V.G., Eppelbaum, L.V., Kuderavets, R.S., Menshov, O.I. and Gadirov, K.V., 2018. Indicative features of local magnetic anomalies from hydrocarbon deposits: examples from Azerbaijan and Ukraine, Acta Geophysica, doi: 10.1007/s11600-018-0224-0
  • Gadirov, V.G. and Eppelbaum, L.V., 2012. Detailed gravity, magnetics successful in exploring Azerbaijan onshore areas. Oil and Gas Journal, 5, 60-73
  • Gadirov, V.G., 1994. The physical-geological principles of application of gravity and magnetic prospecting in searching oil and gas deposits. Proceed. of 10th Petroleum Congress and Exhibition of Turkey, Ankara, pp. 197-203
  • Geist, E.L., Childs, J.R. and Scholl, D.W., 1987. Evolution and petroleum geology of Amlia and Amukta intra-arc summit basins, Aleutian Ridge. Marine and Petroleum Geology, 4, 334-352
  • Griffin, W.R., 1949. Residual gravity in theory and practice. Geophysics, 14, 39-58
  • Hakimi, M.H., Al-Matary, A.M. and Ahmed, A.., 2017. Bulk geochemical characteristics and carbon isotope composition of oils from the Sayhut sub-basin in the Gulf of Aden with emphasis on organic matter input, age and maturity. Egyptian Journal of Petroleum, https://doi.org/10.1016/j.ejpe.2017.06.002
  • Hartkopf-Fröder, C., Kloppisch, M., Mann, U., Neumann-Mahlkau, P., Schaefer, R.G. and Wilkes, H., 2007. The end-Frasnian mass extinction in the Eifel Mountains, Germany: new insights from organic matter composition and preservation. Geological Society, London, Special Publications, 278, 173-196. doi: 10.1144/SP278.8
  • Heroux, Y., Chagnon, A.G. and Bertrand, R., 1979. Compilation and correlation of major thermal maturation indicators. AAPG Bulletin, 63, 2128-2144
  • Hunt, J.M., 1995. Petroleum Geochemistry and Geology. W.H. Freeman and Company, New York. 743 p.
  • Ivakhnenko, O.P, Abirov, R. and Logvinenko, A., 2015. New method for characterisation of petroleum reservoir fluid-mineral deposits using magnetic analysis. Energy Procedia, 76, 454-462
  • Koçyiğit, A., 1987. Hasanoğlan (Ankara) yöresinin tektonostratigrafisi: Karakaya orojenik kuşağının evrimi. Yerbilimleri, 14, 269-293
  • Li, M., Lou, Z. H., Zhu, R., Jin, A. M. and Ye, Y., 2014. Distribution and geochemical characteristics of fluids in ordovician marine carbonate reservoirs of the Tahe oilfield. Journal of Earth Science, 25, 486-494
  • Liu, S., Qi, S., Luo, Z., Liu, F., Ding, Y., Huang, H., Chen, Z., Cheng, S., 2018. The origin of high hydrocarbon groundwater in shallow Triassic aquifer in Northwest Guizhou, China. Environmental Geochemistry and Health, 40(1), 415-433
  • Lyatsky, H.V., Thurston, J.B., Brown, R.J. and Lyatsky, V.B., 1992. Hydrocarbon exploration applications of potential field horizontal gradient vector maps. Canadian Society of Exploration Geophysicists Recorder, 17(9), 10-15
  • Mathur, S., Jain, V.K., Tripathi, G.K., Jassal, J.K. & Chandra, K. 1988. Biological marker geochemistry of crude oils of Cambay Basin, India. In: Kumar, R.K., Dwivedi, P., Banerjie, V. & Gupta, V. (eds) Petroleum Geochemistry and Exploration in the Afro-Asian Region. Balkema, Rotterdam, 459-473
  • Mille, G., Asia, L., Guiliano, M., Malleret, L. and Doumenq, P., 2007. Hydrocarbons in coastal sediments from the Mediterranean Sea (Gulf of Fos area, France). Marine Pollution Bulletin, 54, 566-575
  • Nettleton, L.L., 1976. Gravity and Magnetics in Oil Prospecting. McGraw-Hill, 464 p.
  • Okay, A. and Göncüoğlu, C., 2004. The Karakaya complex: A review of data and concepts. Turkish Journal of Earth Sciences, 13, 77-95
  • Onojake, M.C., Osuji, L.C. and Oforka, N.C., 2013. Preliminary hydrocarbon analysis of crude oils from Umutu/Bomu fields, south west Niger Delta Nigeria. Egyptian Journal of Petroleum, 22, 217-224
  • Özdemir, A., 2019a. Hasanoğlan (Ankara) petrol sisteminin organik hidrojeokimyasal kanıtları. Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi. doi: 10.5505/pajes.2018.12316
  • Özdemir, A., 2019b. Büyük Menderes grabeni (Batı Anadolu) Neojen öncesi petrol sisteminin organik hidrojeokimyasal kanıtları ve potansiyel kapanlar. Avrupa Bilim ve Teknoloji Dergisi, (16), 325-354
  • Özdemir, A., 2018. Suda TPH (Toplam Petrol Hidrokarbonları) analizinin petrol ve doğalgaz arama amaçlı kullanımı: Türkiye’den ilk önemli sonuçlar. Mühendislik Bilimleri ve Tasarım Dergisi, 6(4), 615-636
  • Özdemir, A. and Şahinoğlu, A., 2018. Prospective areas for petroleum exploration and oil & gas potential of the onshore Hatay (Southern Turkey). 18 International Multidisciplinary Scientific GeoConference (SGEM 2018), 719-726, Doi: 10.5593/sgem2018/1.4/S06.094
  • Pašteka, R., 2000. 2D semi-automated interpretation methods in gravimetry and magnetometry. Acta Geologica Universitatis Comeniana, 55, 5-50
  • Peters, K.E., Fraser, T.H., Amris, W., Rustanto, B. and Hermanto, E., 1999. Geochemistry of crude oils from eastern Indonesia. American Association of Petroleum Geologists Bulletin, 83, 1927-1942
  • Peters, K.E. and Moldowan, J.M., 1993. The Biomarker Guide, Interpreting Molecular Fossils in Petroleum and Ancient Sediments. Englewood Cliffs, Jersey, Prentice Hall, 339-363
  • Piskarev, A.L. and Tchernyshev, M.Y., 1997. Magnetic and gravity anomaly patterns related to hydrocarbon fields in northern West Siberia. Geophysics, 62(3), 831-841
  • Ruban, D.A., Al-Husseini, M.I. and Iwasaki, Y., 2007. Review of Middle East Paleozoic Plate tectonics. GeoArabia, 12(3), 35-56
  • Sakroon, S.A., 2008. Effect of oilfield brine on groundwater quality in Marmul area, Sultanate of Oman. United Arab Emirates University, MSc. Thesis, 146 p.
  • Sarı, A., Bahtiyar, I., Brenner, R.L. and Dogan, A.U., 2003. Potential source rocks for the crude oils in the Ikizce and Tokaris oil fields, SE Turkey. Petroleum Geoscience, 9, 347-356
  • Satyana, A.H., 2015. Subvolcanic hydrocarbon prospectivity of Java: Opportunities and challenges. Proceedings, Indonesian Petroleum Association. Thirty-Ninth Annual Convention & Exhibition, May 2015. IPA15-G-105
  • Sayit, K., 2010. Geochemistry and Petrogenesis of the Oceanic Island and Subduction-Related Assemblages from The Paleotethyan Karakaya Subduction/Accretion Complex, Central and Northwest Turkey. Ortadoğu Teknik Üniversitesi, Yüksek Lisans Tezi, 204 s.
  • Sorkhabi, R., 2010. Why So Much Oil in the Middle East ?. Geoexpro, Vol. 7, No. 1
  • Stephen, O.I. and Iduma, U., 2018. Hydrocarbon potential of Nigeria’s Inland Basin: Case study of Afikpo basin. Journal of Applied Geology and Geophysics, 6(4), 1-24
  • Svancara, J., 1983. Approximate method for direct interpretation of gravity anomalies caused by surface three‐dimensional geologic structures. Geophysics, 48(3), 361-366, https://doi.org/10.1190/1.1441474
  • Tissot, B.P. and Welte, D.H., 1984. Petroleum Formation and Occurrence. Springer-Verlag, 699 p.
  • Tran, K.L. and Philippe, B., 1993. Oil and rock extract analysis. in Applied Petroleum Geochemistry (M.L., Bordenave, eds.), p. 373-394
  • Thompson, J.G., 1982. Hydrocarbon source rock analyses of Pakawau Group and Kapuni Formation sediments, northwest Nelson and offshore South Taranaki, New Zealand. New Zealand Journal of Geology and Geophysics, 25(2), 141-148, DOI:10.1080/00288306.1982.10421406
  • Töpfer, K.D., 1977. Improved technique for rapid interpretation of gravity anomalies caused by two-dimensional sedimentary basins. Journal of Geophysics, 43, 645-654 (in Švancara, J., 1983. Approximate method for direct interpretation of gravity anomalies caused by surface three‐dimensional geologic structures. Geophysics, 48(3), 361-366, https://doi.org/10.1190/1.1441474
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Mamak (Ankara) Çalışan Petrol Sisteminin Jeokimyasal Kanıtı Olarak Olgun Hidrokarbonlarca Zengin Sular ve Bölgedeki Potansiyel Kapan Alanı

Year 2019, Issue: 17, 244 - 260, 31.12.2019
https://doi.org/10.31590/ejosat.589253

Abstract

Bu çalışma, Mamak (Ankara) bölgesinin jeokimyasal çalışmalar, tektonik ve jeofizik veriler ile petrol ve doğalgaz potansiyelinin değerlendirilmesi için yapılmıştır. Çalışma, üç aşamada yürütülmüştür. Birinci aşamada, literatürden çalışma alanının jeolojik özellikleri incelenmiştir. Böylece, jeokimyasal analizler ve jeofizik veri değerlendirmeleri için gerekli olan jeolojik veriler derlenmiştir. İkinci aşamada, çalışma alanının manyetik ve gravite haritaları hazırlanmıştır. Jeolojik ve jeofizik verilerin birlikte değerlendirilmesi sonucunda, çalışma alanında petrol kapanı olabilecek bir yapı belirlenmiştir. Üçüncü aşamada, belirlenen bu yapı üzerindeki ve çevresindeki çeşmelerinden (hayratlardan) alınan su numunelerinde Toplam Petrol Hidrokarbonları (TPH) analizleri yapılarak belirlenen yapının petrol ve doğalgaz potansiyeli değerlendirilmiştir. Yapılan analizler sonucunda, su numunelerin tamamında hidrokarbonlar tespit edilmiştir. Sularda tespit edilen hidrokarbonların kaynağının belirlenmesi için organik jeokimyasal yöntemler kullanılmıştır. Su numunelerinde belirlenen n-alkan hidrokarbonlar, olgun petrol hidrokarbonlarıdır. Bu olgun petrol hidrokarbonları, çalışma alanında çalışan bir petrol sisteminin varlığı için kanıttır. Olgun petrol hidrokarbonları içeren suların varlığı nedeniyle, gravite ve manyetik verilere göre çalışma alanında belirlenen maksimum 330 m derinliğindeki yapının bir petrol ve/veya doğalgaz rezervuarı olma potansiyeli oldukça yüksektir.

References

  • Aydın, A., 1997. Gravite Verilerinin Normalize Edilmiş Tam Gradyan, Varyasyon ve İstatistik Yöntemleri ile Hidrokarbon Açısından Değerlendirilmesi, Model Çalışmalar ve Hasankale-Horasan (Erzurum) Havzasına Uygulanması. Karadeniz Teknik Üniversitesi, Doktora Tezi, 151 s.
  • Aydın, A., 2004. Gravite anomalilerinin doğrudan yorum yöntemleri ile değerlendirilmesi: Hasankale-Horasan bölgesinden bir uygulama. Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi, 11(1), 95-102
  • Banga, T., Capuano, R.M. and Bissada, K.K., 2011. Petroleum generation in the southeast Texas basin: Implications for hydrocarbon occurrence at the South Liberty salt dome. AAPG Bulletin, 95(7), 1257-1291
  • Beyer, J., Jonsson, G., Porte, C., Krahn, M.M. and Ariese, F., 2010. Analytical methods for determining metabolites of polycyclic aromatic hydrocarbon (PAH) pollutants in fish bile: a review. Environ. Toxicol Pharmacol, 30(3), 224-244
  • Bozkurt, E., 1990. Karakaya napı içinde yeni bir Karbonifer ve Permiyen bulgusu. MTA Dergisi, 110, 181-188
  • Bray, E.E. and Evans, E.D., 1961. Distribution of n-paraffins as a clue to recognition of source rocks. Geochim. Cosmochim, Acta. 22, 2-15
  • Bray, E.E. and Evans, E.D., 1965. Hydrocarbons in non-reservoir-rock source beds: Part 1. American Association of Petroleum Geologists Bulletin, 49, 248-257
  • Cai, C. F., Mei, B. W., Li, W. and Fan, G., 1997. Water-rock interaction in Tarim Basin: Constraints from oilfield water geochemistry. Chinese Journal of Geochemistry, 16, 289-303
  • Çelik, M., 1989. Ankara Doğu Kesiminin Mineralojik, Petrografik ve Jeokimyasal Özelliklerinin İncelenmesi. Hacettepe Üniversitesi, Fen Bilimleri Enstitüsü, Doktora Tezi, 253 s.
  • Çorbacıoğlu, H., Kırman, Z.D., Yılmazer, P., Doğan, S., Tokoğlu, E.E., Araç, B., Türesin, F.M., Huvaj, N.Y., Elmacı, A., Türkecan, A.T., Çevik, T., Bahtiyar, İ., Sarıkaya, H., Aydın, MG., Bakırhan, B. ve Yüksel, M., 2018. Hakkâri-Yüksekova-Hisardağı Bölgesi’nden Alınan Su, Emare ve Kayaç Örneklerinin Değerlendirme Raporu. TPAO Rapor No: 4297
  • Didyk, B.M., Simoneit, B.R.T., Brassel, S.C. and Englington, G., 1978. Organic geochemical indicators of paleoenvironmental conditions of sedimentation. Nature, 272, 216-222
  • Ediger, V., 1987. Rift havzalarının jeoloik evrimi ve hidrokarbon potansiyeli. Türkiye 7. Petrol Kongresi, 1-10
  • Feng, Q.Y., and Han, B.P., 2002. Hydrogeochemical simulation of water-rock interaction under water flood recovery in Renqiu oilfield, Hebei Province, China. Chinese Journal of Geochemistry, 21, 156-162
  • Frimmel, A., Oschmann, W. and Schwark, L. 2004. Chemostratigraphy of the Posidonia Black Shale, SW Germany: I. Influence of sea-level variation on organic facies evolution. Chemical Geology, 206, 199-230
  • Gadirov, V.G., Eppelbaum, L.V., Kuderavets, R.S., Menshov, O.I. and Gadirov, K.V., 2018. Indicative features of local magnetic anomalies from hydrocarbon deposits: examples from Azerbaijan and Ukraine, Acta Geophysica, doi: 10.1007/s11600-018-0224-0
  • Gadirov, V.G. and Eppelbaum, L.V., 2012. Detailed gravity, magnetics successful in exploring Azerbaijan onshore areas. Oil and Gas Journal, 5, 60-73
  • Gadirov, V.G., 1994. The physical-geological principles of application of gravity and magnetic prospecting in searching oil and gas deposits. Proceed. of 10th Petroleum Congress and Exhibition of Turkey, Ankara, pp. 197-203
  • Geist, E.L., Childs, J.R. and Scholl, D.W., 1987. Evolution and petroleum geology of Amlia and Amukta intra-arc summit basins, Aleutian Ridge. Marine and Petroleum Geology, 4, 334-352
  • Griffin, W.R., 1949. Residual gravity in theory and practice. Geophysics, 14, 39-58
  • Hakimi, M.H., Al-Matary, A.M. and Ahmed, A.., 2017. Bulk geochemical characteristics and carbon isotope composition of oils from the Sayhut sub-basin in the Gulf of Aden with emphasis on organic matter input, age and maturity. Egyptian Journal of Petroleum, https://doi.org/10.1016/j.ejpe.2017.06.002
  • Hartkopf-Fröder, C., Kloppisch, M., Mann, U., Neumann-Mahlkau, P., Schaefer, R.G. and Wilkes, H., 2007. The end-Frasnian mass extinction in the Eifel Mountains, Germany: new insights from organic matter composition and preservation. Geological Society, London, Special Publications, 278, 173-196. doi: 10.1144/SP278.8
  • Heroux, Y., Chagnon, A.G. and Bertrand, R., 1979. Compilation and correlation of major thermal maturation indicators. AAPG Bulletin, 63, 2128-2144
  • Hunt, J.M., 1995. Petroleum Geochemistry and Geology. W.H. Freeman and Company, New York. 743 p.
  • Ivakhnenko, O.P, Abirov, R. and Logvinenko, A., 2015. New method for characterisation of petroleum reservoir fluid-mineral deposits using magnetic analysis. Energy Procedia, 76, 454-462
  • Koçyiğit, A., 1987. Hasanoğlan (Ankara) yöresinin tektonostratigrafisi: Karakaya orojenik kuşağının evrimi. Yerbilimleri, 14, 269-293
  • Li, M., Lou, Z. H., Zhu, R., Jin, A. M. and Ye, Y., 2014. Distribution and geochemical characteristics of fluids in ordovician marine carbonate reservoirs of the Tahe oilfield. Journal of Earth Science, 25, 486-494
  • Liu, S., Qi, S., Luo, Z., Liu, F., Ding, Y., Huang, H., Chen, Z., Cheng, S., 2018. The origin of high hydrocarbon groundwater in shallow Triassic aquifer in Northwest Guizhou, China. Environmental Geochemistry and Health, 40(1), 415-433
  • Lyatsky, H.V., Thurston, J.B., Brown, R.J. and Lyatsky, V.B., 1992. Hydrocarbon exploration applications of potential field horizontal gradient vector maps. Canadian Society of Exploration Geophysicists Recorder, 17(9), 10-15
  • Mathur, S., Jain, V.K., Tripathi, G.K., Jassal, J.K. & Chandra, K. 1988. Biological marker geochemistry of crude oils of Cambay Basin, India. In: Kumar, R.K., Dwivedi, P., Banerjie, V. & Gupta, V. (eds) Petroleum Geochemistry and Exploration in the Afro-Asian Region. Balkema, Rotterdam, 459-473
  • Mille, G., Asia, L., Guiliano, M., Malleret, L. and Doumenq, P., 2007. Hydrocarbons in coastal sediments from the Mediterranean Sea (Gulf of Fos area, France). Marine Pollution Bulletin, 54, 566-575
  • Nettleton, L.L., 1976. Gravity and Magnetics in Oil Prospecting. McGraw-Hill, 464 p.
  • Okay, A. and Göncüoğlu, C., 2004. The Karakaya complex: A review of data and concepts. Turkish Journal of Earth Sciences, 13, 77-95
  • Onojake, M.C., Osuji, L.C. and Oforka, N.C., 2013. Preliminary hydrocarbon analysis of crude oils from Umutu/Bomu fields, south west Niger Delta Nigeria. Egyptian Journal of Petroleum, 22, 217-224
  • Özdemir, A., 2019a. Hasanoğlan (Ankara) petrol sisteminin organik hidrojeokimyasal kanıtları. Pamukkale Üniversitesi Mühendislik Bilimleri Dergisi. doi: 10.5505/pajes.2018.12316
  • Özdemir, A., 2019b. Büyük Menderes grabeni (Batı Anadolu) Neojen öncesi petrol sisteminin organik hidrojeokimyasal kanıtları ve potansiyel kapanlar. Avrupa Bilim ve Teknoloji Dergisi, (16), 325-354
  • Özdemir, A., 2018. Suda TPH (Toplam Petrol Hidrokarbonları) analizinin petrol ve doğalgaz arama amaçlı kullanımı: Türkiye’den ilk önemli sonuçlar. Mühendislik Bilimleri ve Tasarım Dergisi, 6(4), 615-636
  • Özdemir, A. and Şahinoğlu, A., 2018. Prospective areas for petroleum exploration and oil & gas potential of the onshore Hatay (Southern Turkey). 18 International Multidisciplinary Scientific GeoConference (SGEM 2018), 719-726, Doi: 10.5593/sgem2018/1.4/S06.094
  • Pašteka, R., 2000. 2D semi-automated interpretation methods in gravimetry and magnetometry. Acta Geologica Universitatis Comeniana, 55, 5-50
  • Peters, K.E., Fraser, T.H., Amris, W., Rustanto, B. and Hermanto, E., 1999. Geochemistry of crude oils from eastern Indonesia. American Association of Petroleum Geologists Bulletin, 83, 1927-1942
  • Peters, K.E. and Moldowan, J.M., 1993. The Biomarker Guide, Interpreting Molecular Fossils in Petroleum and Ancient Sediments. Englewood Cliffs, Jersey, Prentice Hall, 339-363
  • Piskarev, A.L. and Tchernyshev, M.Y., 1997. Magnetic and gravity anomaly patterns related to hydrocarbon fields in northern West Siberia. Geophysics, 62(3), 831-841
  • Ruban, D.A., Al-Husseini, M.I. and Iwasaki, Y., 2007. Review of Middle East Paleozoic Plate tectonics. GeoArabia, 12(3), 35-56
  • Sakroon, S.A., 2008. Effect of oilfield brine on groundwater quality in Marmul area, Sultanate of Oman. United Arab Emirates University, MSc. Thesis, 146 p.
  • Sarı, A., Bahtiyar, I., Brenner, R.L. and Dogan, A.U., 2003. Potential source rocks for the crude oils in the Ikizce and Tokaris oil fields, SE Turkey. Petroleum Geoscience, 9, 347-356
  • Satyana, A.H., 2015. Subvolcanic hydrocarbon prospectivity of Java: Opportunities and challenges. Proceedings, Indonesian Petroleum Association. Thirty-Ninth Annual Convention & Exhibition, May 2015. IPA15-G-105
  • Sayit, K., 2010. Geochemistry and Petrogenesis of the Oceanic Island and Subduction-Related Assemblages from The Paleotethyan Karakaya Subduction/Accretion Complex, Central and Northwest Turkey. Ortadoğu Teknik Üniversitesi, Yüksek Lisans Tezi, 204 s.
  • Sorkhabi, R., 2010. Why So Much Oil in the Middle East ?. Geoexpro, Vol. 7, No. 1
  • Stephen, O.I. and Iduma, U., 2018. Hydrocarbon potential of Nigeria’s Inland Basin: Case study of Afikpo basin. Journal of Applied Geology and Geophysics, 6(4), 1-24
  • Svancara, J., 1983. Approximate method for direct interpretation of gravity anomalies caused by surface three‐dimensional geologic structures. Geophysics, 48(3), 361-366, https://doi.org/10.1190/1.1441474
  • Tissot, B.P. and Welte, D.H., 1984. Petroleum Formation and Occurrence. Springer-Verlag, 699 p.
  • Tran, K.L. and Philippe, B., 1993. Oil and rock extract analysis. in Applied Petroleum Geochemistry (M.L., Bordenave, eds.), p. 373-394
  • Thompson, J.G., 1982. Hydrocarbon source rock analyses of Pakawau Group and Kapuni Formation sediments, northwest Nelson and offshore South Taranaki, New Zealand. New Zealand Journal of Geology and Geophysics, 25(2), 141-148, DOI:10.1080/00288306.1982.10421406
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There are 56 citations in total.

Details

Primary Language Turkish
Subjects Engineering
Journal Section Articles
Authors

Adil Özdemir 0000-0002-3975-2846

Publication Date December 31, 2019
Published in Issue Year 2019 Issue: 17

Cite

APA Özdemir, A. (2019). Mamak (Ankara) Çalışan Petrol Sisteminin Jeokimyasal Kanıtı Olarak Olgun Hidrokarbonlarca Zengin Sular ve Bölgedeki Potansiyel Kapan Alanı. Avrupa Bilim Ve Teknoloji Dergisi(17), 244-260. https://doi.org/10.31590/ejosat.589253