Article

인도네시아 칼리만탄 남동부 바리토 분지의 석유 탐사 잠재성 고찰: 인접한 쿠타이 분지와의 석유시스템 비교

원석기1, 신영재2,*, Herru Lastiadi Setiawan3, Jonathan Setyoko Hadimuljono3, 손미라2
SeokGi Won1, Young Jae Shinn2,*, Herru Lastiadi Setiawan3, Jonathan Setyoko Hadimuljono3, Mira Son2
Author Information & Copyright
1한국가스공사 해외사업본부
2한국지질자원연구원 CO2지중저장연구단
3인도네시아 레미가스
1Overseas Business Division, Korea Gas Corporation (KOGAS)
2Center for CO2 Geological Storage, Korea Institute of Geoscience and Mineral Resources (KIGAM)
3Research and Development Centre for Oil and Gas Technology (LEMIGAS), Agency of Research and Development for Energy and Mineral Resources, Indonesia
*Corresponding Author :Young Jae Shinn, Tel: +82-42-868-3251, Fax: +82-42-868-3414, E-mail: shinn21@kigam.re.kr

ⓒ Copyright 2018 Korean Society of Petroleum and Sedimentary Geology. This is an Open-Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.

Received: Jun 21, 2018 ; Revised: Jun 28, 2018 ; Accepted: Jun 29, 2018

Published Online: Oct 31, 2018

요약

인도네시아 칼리만탄 남동부에 위치한 신생대 열개 분지인 바리토 분지와 쿠타이 분지는 석유탐사 역사가 오래된 분지이다. 지리적으로 인접한 두 분지는 분지형성 기작과 퇴적환경 발달이 매우 유사하지만 쿠타이 분지에서는 다수의 대규모 유전이 발견된 반면, 바리토 분지에서는 분지 북동부 지역에 국한되어 유전이 발견되었다. 두 분지의 퇴적환경은 대체로 동시열개 호소성 환경에서 삼각주 퇴적상, 후열개 해양성 환경으로 변화하는 유사한 특징을 나타낸다. 하지만, 바리토 분지는 동시열개 탄정층, 쿠타이 분지는 후열개 삼각주 퇴적층이 주요한 석유시스템을 형성하고 있으며, 각각 동시열개 단계의 석유시스템 유형과 후열개 단계의 석유시스템 유형과 대비된다. 이와 같이 석유시스템 발달 유형이 다른 이유는 조구조적 운동과 관련된 융기와 분지 침강이 시기적으로 다르게 일어나 근원암 매몰 심도와 성숙도에 영향을 미쳤기 때문이다. 메라투스 산맥의 차별적인 융기는 바리토 분지의 북동부 지역을 중심으로 동시열개 퇴적층인 탄정층의 열적 성숙이 가능하게 하였다. 반면에 칼리만탄 중앙 산맥의 융기는 쿠타이 분지의 동시열개 퇴적층의 삭박을 야기하였고, 삭박된 퇴적물들은 후열개 단계 동안 두꺼운 삼각주 퇴적층을 형성하면서 충분히 매몰되어 후열개 단계 석유시스템 유형이 발달하게 되었다. 바리토 분지의 탐사 잠재성은 이미 알려진 동시열개 탄정층에 여전히 남아 있고, 그 외에 신생대 이전 균열 기반암, 후열개 와루킨층 저류암, 바리토 분지 서쪽 지역 베라이 탄산염 저류암에 대한 추가적인 탐사와 평가가 필요하다.

ABSTRACT

The Kutai and Barito basins are the Cenozoic rift basins in southeastern Kalimantan, Indonesia and are very mature for hydrocarbon exploration history. Both basins have experienced similar structural evolution and depositional history. Despite the similarity between two basins, large oil and gas fields were found in the Kutai Basin, whereas not common in the Barito Basin and localized in its northeastern part. Depositional history of both basins evolved from lacustrine syn-rift to marine post-rift stages through fluvio-deltaic transitional environment. However, different type of petroleum system has been identified in the Barito and Kutai basins. Syn-rift lacustrine to fluvio-deltaic sequence (Tanjung Formation) is an essential element of petroleum system in the Barito Basin and post-rift deltaic sequence (Balikpapan and Kampung Baru formations) is a key element in the Kutai Basin. Such difference in the petroleum system type is associated with difference in burial history, affected by spatio-temporal variation of uplifting and basin subsidence. The differential uplifting of the Meratus Mountains allowed the syn-rift Tanjung Formation to reach thermal maturation only in the northeastern Barito Basin. The uplifting of the Central Kalimantan Mountains, however, caused erosion of the syn-rift sequence in the Kutai Basin and supplied enough sediments to form the post-rift deltaic sequence with thermal maturity. Future exploration potential of the Barito Basin still remains in the well-known, syn-rift Tanjung Formation and needs to be further evaluated from the pre-Cenozoic fractured basement, the post-rift Warukin, and the Berai limestone reservoirs particularly in the western region of the Barito Basin.

Keywords: 바리토 분지; 쿠타이 분지; 석유 시스템; 석유 탐사; 칼리만탄
Keywords: Barito Basin; Kutai Basin; petroleum system; hydrocarbon exploration; Kalimantan

References

1.

Aslam, B.M., Ulitha, D., Swadesi, B., Fauzi, I., Marhaendrajana, T., Purba, F.I., Wardhana, A.I., Buhari, A., Hakim, R. and Hasibuan, R., 2017. History match to support interpretation of surfactant flooding pilot test in Tanjung Field. SPE/IATMI Asia Pacific Oil & Gas Conference and Exhibition, Society of Petroleum Engineers, Jakarta, 17- 19 October

2.

Atkinson, C., Wain, T., Sugiatno, H. and Hayes, S., 2017. Hidden basins and undrilled anticlines: the legacy of early oil exploration in Indonesia. Proceedings of the 2017 South East Asia Petroleum Exploration Society (SEAPEX) Conference

3.

Bon, J., Fraser, T.H., Amris, W., Stewart, D.N., Abubakar, Z. and Sosromihardjo, S., 1996. A review of the exploration potential of the Paleocene Lower Tanjung Formation in the South Barito Basin. Proceedings of Indonesian Petroleum Association, 25th Annual Convention, FA96- 1.0-027, 1-11

4.

Burrus, J., Brosse, E., Choppin de Janvry, G., Grosjean, Y. and Oudin, J.L., 1992. Basin modelling in the Mahakam Delta based on the integrated 2D model Temispack. Proceedings of Indonesian Petroleum Association, 21st Annual Convention (Volume 1), 23-43

5.

Chambers, J.L.C. and Daley, T.E., 1997. A tectonic model for the onshore Kutai Basin, East Kalimantan. In: Fraser, A.J., Matthews, S.J., Murphy, R.W. (eds.), Petroleum Geology of Southeast Asia. Geological Society of London Special Publication, 126, 375-393

6.

Daly, M.C., Cooper, M.A., Wilson, I., Smith, D.G. and Hooper, B.G.D., 1991. Cenozoic plate tectonics and basin evolution in Indonesia. Marine and Petroleum Geology, 8, 2-21

7.

Davidson, J.W., 1991. The geology and prospectivity of Buton Island, Southeast Sulawesi, Indonesia. Proceedings of Indonesian Petroleum Association, 20th Annual Convention, 209-234

8.

Doust, H. and Noble, R.A., 2008. Petroleum systems of Indonesia. Marine and Petroleum Geology, 25, 103-129

9.

Doust, H. and Sumner, H.S., 2007. Petroleum systems in rift basins - a collective approach in Southeast Asian basins. Petroleum Geoscience, 13, 127-144

10.

Dunham, J.B., Brown, T.J., Lin, R., Redhead, R.B., Schwing, H.F. and Shirley, S.H., 2001. Transport and concentration of gas-and oil-prone kerogens into deep water sediments of the Kutei Basin, East Kalimantan, Indonesia. AAPG Annual Meeting Program and Abstracts, Denver Colorado, p. a54

11.

Ferguson, A. and McClay, K., 1997. Structural modelling within the Sanga-Sanga PSC, Kutei Basin, Kalimantan: its implication to paleochannel orientation studies and timing of hydrocarbon entrapment. In: Howes, J.V.C., Noble, R.A. (eds.), Proceedings of the International Conference on Petroleum Systems of SE Asia and Australia, Indonesian Petroleum Association, 727-743

12.

Garrard, R.A., Supandjono, J.B. and Surono, 1988. The geology of the Banggai-Sula microcontinent, eastern Indonesia. Proceedings of the Indonesian Petroleum Association, 17th Annual Convention, 23-52

13.

Hall, R., 1996. Reconstructing cenozoic SE Asia. In: Hall, R., Blundell, D.J. (eds.). Tectonic Evolution of SE Asia. Geological Society London Special Publication, 106, 153-184

14.

Hall, R., van Hattum, M.C.A. and Spakman, W., 2008. Impact of India-Asia collision on SE Asia: The record in Borneo. Tectonophysics, 451, 366-389

15.

Harun, M.R., Ardhiansyah, B.N. and Putral, R.T., 2017. Warukin Deep - The hidden potential of Warukin Field, South Borneo: Untouched Reserves in Mature Field. AAPG 2017 Asia Pacific Region Technical Symposium, Bandung, Indonesia, 13-14 September

16.

Heriyanto, N., Nawawi, A., Mason, A.D.M., Ingram, F.T., Pedersen, D.E. and Davis, R.C., 1996. Exploratory update in the North Tanjung Block, South Kalimantan. Proceedings of Indonesian Petroleum Association, 25th Annual Convention, 55-68

17.

Hutchison, C.S., 1996. The "Rajang Accretionary Prism" and "Lupar Line" problem of Borneo. In: Hall, R., Blundell, D.J. (eds.), Tectonic Evolution of SE Asia. Geological Society London Special Publication, 106, 247-261

18.

Kleibacker, D., Tasrianto, R. and Saripudin, A., 2015. Long distance migration in Central Kalimantan: a solution to the Barito Dilemma?. Proceedings of Indonesian Petroleum Association, 39th Annual Convention, IPA15-G- 085

19.

Kusuma, I. and Darin, T., 1989. The hydrocarbon potential of the lower Tanjung Formation, Barito Basin, SE Kalimantan. Proceedings of Indonesian Petroleum Association, 18th Annual Convention, 107-138

20.

Larasati, D., Fiqih, F.M., Idris, R., Widarto, D.S. and Sapiie, B., 2015. Fracture shale gas study of Tanjung Formation Barito Basin, South Kalimantan. Proceedings of Indonesian Petroleum Association, 39th Annual Convention, IPA15-G-113

21.

Marheni, L., Aditiyo, R., Elyan, A.P. and Anggraeni, E., 2009. Tertiary tectonic of Barito Basin, South East Kalimantan, and implication for petroleum system. Proceedings PIT IAGI Semarang 2009, The 38th IAGI Annual Convention and Exhibition, Semarang, 13-14 October

22.

Mason, A.D., Haebig, J.C. and McAdoo, R.L., 1993, A fresh look at the North Barito Basin, Kalimantan. Proceedings of Indonesian Petroleum Association, 22nd Annual Convention, 499-606

23.

Matthews, S.J. and Bransden, P.J.E., 1995. Late cretaceous and cenozoic tectono-stratigraphic development of the East Java Sea Basin, Indonesia. Marine and Petroleum Geology, 12, 499-510

24.

McClay, K., Dooley, T., Ferguson, A. and Poblet, J., 2000. Tectonic evolution of the Sanga Sanga Block, Mahakam Delta, Kalimantan, Indonesia. American Association of Petroleum Geologists Bulletin, 84, 765-786

25.

Metcalfe, I., 1996. Pre-cretaceous evolution of SE Asian Terranes. In: Hall, R., Blundell, D.J. (eds.), Tectonic Evolution of SE Asia. Geological Society of London Special Publication, 106, 97-122

26.

Moss, S.J. and Chambers, J., 1999. Tertiary facies architecture in the Kutai Basin, Kalimantan, Indonesia. Journal of Asia Earth Science, 17, 157-181

27.

Moss, S.J., Carter, A., Baker, S. and Hurford, A.J., 1998. A late oligocene tectono-volcanic event in East Kalimantan and the implications for tectonics and sedimentation in Borneo. Journal of the Geological Society, 155, 177- 192

28.

Moss, S.J., Chambers, J., Cloke, I., Satria, D., Ali, J.R., Baker, S., Milsom, J. and Carter, A., 1997. New observations on the sedimentary and tectonic evolution of the Tertiary Kutai Basin, East Kalimantan. In: Fraser, A.J., Matthews, S.J., Murphy, R.W. (eds.), Petroleum Geology of Southeast Asia. Geological Society of London Special Publication, 126, 395-416

29.

Nugroho, B., Guritno, E., Mustapha, H., Darmawan, W., Subekti, A. and Davis, C., 2016. Post rift Oligocene marine source rock, a new petroleum system in Greater Bangkanai, Upper Kutai, Indonesia. International Petroleum Technology Conference, Thailand, 14-16 November

30.

PERTAMINA, 1980. Stratigrafi Tersier Cekungan Kutei - Kalimantan Timur. Report Number IF 1387, unpublished report

31.

Rotinsulu, L.F., Sardjono, S. and Heriyanto, N., 1993. The hydrocarbon generation and trapping mechanism within the northern part of Barito Basin, South Kalimantan. Proceedings of Indonesian Petroleum Association, 22nd Annual Convention, 607-633

32.

Sapiie, B., Rifiyanto, A. and Perdana, L.A., 2014. Cleats analysis and CBM potential of the Barito Basin, South Kalimantan, Indonesia. AAPG International Conference & Exhibition, Istanbul, Turkey, 14-17 September

33.

Satyana, A.H. and Silitonga, P.D., 1994. Tectonic reversal in East Barito Basin, South Kalimantan: consideration of the types of inversion structures and petroleum significance. Proceedings of Indonesian Petroleum Association, 23rd Annual Convention, 57-74

34.

Satyana, A.H., 1994. The Northern Massifs of the Meratus Mountains, South Kalimantan: nature, evolution and tectonic implications to the Barito structures. Proceedings of Indonesian Petroleum Association, 23rd Annual Convention, 457-470

35.

Satyana, A.H., 1995. Paleogene unconformities in the Barito Basin, Southeast Kalimantan: A concept for the solution of the "Barito Dilemma" and a key to the search for Paleogene structures. Proceedings of Indonesian Petroleum Association, 24th Annual Convention, 263-275

36.

Satyana, A.H., 1996. Adang-Lupar Fault, Kalimantan: controversies and new observations on the trans-Kalimantan megashear. Proceedings of Indonesian Petroleum Association, 25th Annual Convention, 124-143

37.

Satyana, A.H., Nugroho, D. and Surantoko, I., 1999. Tectonic controls on the hydrocarbon habitats of the Barito, Kutei, and Tarakan Basins, Eastern Kalimantan, Indonesia: major dissimilarities in adjoining basins. Journal of Asian Earth Science, 17, 99-122

38.

Schenk, C.J., Brownfield, M.E., Charpentier, R.R., Cook, T.A., Klett, T.R., Kirschbaum, M.A., Pitman, J.K., Pollastro, R.M. and Tennyson, M.E., 2010. Assessment of undiscovered oil and gas resources of southeast Asia, 2010. U.S. Geological Survey Fact Sheet, 2010-3015

39.

Sikumbang, N., 1990. The geology of the Meratus Mountains South Kalimantan, Indonesia. Geology Indonesia, 13, 1-31

40.

Siregar, M.S. and Sunaryo, R., 1980. Depositional environment and hydrocarbon prospects, Tanjung Formation, Barito Basin, Kalimantan. Proceedings of Indonesian Petroleum Association, 9th Annual Convention, 379-400

41.

Smyth, H.R., Hall, R. and Nichols, G.J., 2008. Cenozoic volcanic arc history of East Java, Indonesia: The stratigraphic record of eruptions on a continental margin. In: Draut, A.E., Clift, P.D., Scholl, D.W. (eds.), Formation and Applications of the Sedimentary Record in Arc Collision Zones. Geological Society of America Special Paper, 436, 199-222

42.

Subekti, A., Mustapha, H., Guritno, E., Smart, J., Susilo, A., Nugroho, B., Darmawan, W. and Wilson, M., 2015. New insights into the Kerendan carbonate platform: an Oligocene reservoir from the Upper Kutai Basin, Kalimantan. Proceedings of Indonesian Petroleum Association, 39th Annual Convention

43.

Sumotarto, T.A., Haris, A., Riyanto, A. and Usman, A., 2016. Shale characterization on Barito field, Southeast Kalimantan for shale hydrocarbon exploration. AIP Conference Proceedings, 1862(1), p. 030195

44.

van de Weerd, A.A. and Armin, R.A., 1992. Origin and evolution of the tertiary hydrocarbon-bearing basins in Kalimantan (Borneo), Indonesia. American Association of Petroleum Geologists Bulletin, 76, 1778-1803

45.

van de Weerd, A.A., Armin, R.A., Mahadi, S. and Ware, P.L.B., 1987. Geologic setting of the Kerendan gas and condensate discovery, tertiary sedimentation and paleogeography of the northwestern part of the Kutei Basin, Kalimantan, Indonesia. Proceedings of Indonesian Petroleum Association, 16th Annual Convention, 317-338

46.

Wain, T. and Berod, B., 1989. The tectonic framework and paleogeographic evolution of the Upper Kutei Basin. Proceedings of Indonesian Petroleum Association, 18th Annual Convention, 55-78

47.

Wilson, M.E.J. and Moss, S.J., 1999. Cenozoic palaeogeographic evolution of Sulawesi and Borneo. Palaeogeography, Palaeoclimatology, Palaeoecology, 145, 303-337

48.

Witts, D., Davies, L. and Morley, R., 2014. Uplift of the Meratus Complex: sedimentology, biostratigraphy, provenance and structure. Proceedings of Indonesian Petroleum Association, 38th Annual Convention, IPA14-G- 052

49.

Witts, D., Davies, L., Morley, R.J. and Anderson, L., 2015. Neogene Deformation of East Kalimantan: A regional perspective. Proceedings of Indonesian Petroleum Association, 39th Annual Convention, FA96-1.0-027, 1-11