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Ditemukan 31 dokumen yang sesuai dengan query
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"Ruteng , capital of Kabupaten manggarai, is situated in the river sediment basin between Poco Ranakan in the southeast and Poco Kuwus in the southwest, at an elevation of 1000 m above mean sea level (msl)...."
Artikel Jurnal  Universitas Indonesia Library
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Berkhout, A.J., 1940-
London: Geophysics Press, 1984
R 622.159 BER s
Buku Teks  Universitas Indonesia Library
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Grant, F.S.
New York: McGraw-Hill, 1965
550 GRA i
Buku Teks  Universitas Indonesia Library
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Sumner, J.S.
Amsterdam: Elsevier, 1976
551 SUM p
Buku Teks  Universitas Indonesia Library
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Scheidegger, Adrian E.
Amsterdam: Elsevier, 1976
551 SCH f
Buku Teks  Universitas Indonesia Library
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Landsberg, H.E.
New York: Academic Press, 1967
551 LAN a
Buku Teks  Universitas Indonesia Library
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Wilson, J. Tuzo
New York: Alfred A. Knoff, 1961
551 WIL i
Buku Teks  Universitas Indonesia Library
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Mill Sartika Indah
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Cekungan Ardjuna merupakan cekungan hidrokarbon busur belakang yang sudah matang. Cekungan tersebut mampu berproduksi dan menyimpan resources migas yang belum dapat terpetakan dengan baik. Oleh karena itu perlu dilakukan kajian dari integrasi metode sikuen stratigrafi, inversi seismik, dan evaluasi petrofisika untuk memprediksi potensi hidrokarbon secara lebih rinci dan lebih akurat. Integrasi ini mampu menghasilkan informasi pada struktur contingent mulai dari Play konsep, sistem petroleum, dan property dari karakteristik reservoir, hingga pemetaan kawasan prospect serta evaluasi resiko temuan eksplorasi. Pemahaman karakteristik internal seismik membantu penarikan marker sikuen seismik stratigrafi dalam penampang seismik. Inversi seismik dapat membantu dalam determinasi penyebaran lithofasies, porositas, fluida di penampang seismik. Peta distribusi inversi seismik overlay dengan peta struktur kedalaman reservoir memberikan parameter luasan perangkap untuk reservoir target yang berada pada sistem pengendapan pasang surut. Evaluasi petrofisika dapat membantu memberikan property porositas, netpay thickness, saturasi fluida air, minyak dan gas. Sumberdaya contingent resources ditemukan pada zona target sebesar 5,92 MMBOE (P10 OOIP) dan 10,56 BCF (P10 OGIP). Sumberdaya Prospective Resources sebesar 12,25 MMBOE (P10 OOIP) dan 22.12 BCF (P10 OGIP).

 


The Ardjuna Basin is a mature back arc hydrocarbon basin. The basin is capable of producing and storing oil and gas resources that cannot be properly mapped. Therefore it is necessary to do a study of the integration of the stratigraphic sequence method, seismic inversion, and petrophysical evaluation to predict hydrocarbon potential in more detail and more accurately. This integration is able to produce information on contingent structures ranging from Play concepts, petroleum systems, and properties from reservoir characteristics, to prospect area mapping and evaluation of risk of exploration findings. Understanding of seismic internal characteristics helps draw stratigraphic sequential seismic markers in seismic cross sections. Seismic inversions can help in the determination of the spread of lithofasies, porosity, fluid in seismic sections. The overlay seismic inversion distribution map with a map of reservoir depth structure provides trapping area parameters for the target reservoir located in the tidal deposition system. Petrophysical evaluation can help provide porosity properties, netpay thickness, water, oil and gas fluid saturation. Contingent resources were found in the target zone of 5,92 MMBOE (P10 OOIP) and 10,56 BCF (P10 OGIP). Prospective Resources are 12,25 MMBOE (P10 OOIP) and 22,12 BCF (P10 OGIP).

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2019
T52672
UI - Tesis Membership  Universitas Indonesia Library
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S. Bachri
"The study area has been subjected to intense fracturing or brittle deformation resulting in five main trends of lineaments and faults, i.e. (1) the Group A (the Perantanaan Fault Group) with a mean of direction N95°E/ N275°E, (2) the Group B (the Gorontalo Fault Group) with a mean of direction N125°E/ N305°E, (3) the Group C (the Paleleh Fault Group) with a mean of direction 165°E /N335°E, (4) the Group D (the Randangan Fault Group) with a mean of direction N25°E/ N205°E and (5) the Group E (the Kuandang Fault Group) having a mean of trend of N55°E/ N235°E. The complexity of structural pattern in the study area has been interpreted to be due to stress system evolution during Neogene - Pleistocene. The changing stress system orientation has reactivated the preexisting faults of the five groups with different sense of movements from the older deformation.
The nearly E-W trending lineaments of Group A or the Perantanaan Fault Group coincide with trend of the long axis of ridges and valleys or depression areas which are covered by volcanic rocks, lake deposits, and alluvium of Quaternary age. This group of structures was presumably developed as reverse or thrust faults during Late Neogene which later on to have beem reactivated as normal faults due to extensional tectonics of the North Sulawesi area during Plesitocene."
Bandung: Pusat Survai geologi Bandung, 2011
551 JSDG 21:3 (2011)
Artikel Jurnal  Universitas Indonesia Library
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