Ditemukan 85877 dokumen yang sesuai dengan query
Anwar Sadat
"Lapangan Kutilang merupakan lapangan penghasil gas di Jawa Timur. Lapangan ini mengalami penurunan produksi yang mengakibatkan tergerusnya cadangan dan nilai keekonomian lapangan tersebut. Kegiatan eksplorasi dilakukan guna menambah sumberdaya dan cadangan dengan target Formasi Kujung I. Formasi ini memiliki potensi hidrokarbon dari interpretasi data log dan gas yang tinggi di Sumur K-2. Anomali SQp dan SQs di zona gas Sumur K-2 memiliki kesamaan rentang nilai dengan anomali SQp dan SQs di lepas pantai Malaysia. Oleh karena itu, penelitian ini bertujuan untuk mendeliniasi fasies, properti dan fluida pori pada Formasi Kujung I dengan metode atenuasi SQp dan SQs. Penelitian ini dilakukan dengan menggunakan data seismik 3D dan 3 buah data sumur pemboran. Hasil penelitian ini diharapkan dapat menemukan sumberdaya baru di Lapangan Kutilang. SQp dan SQs didapatkan dengan menggunakan rasio VpVs dan densitas yang didapatkan dari inversi seismik simultan. Analisis fasies sumuran menghasilkan asosiasi fasies A yang tersusun oleh batugamping dan serpih dan asosiasi fasies B yang tersusun oleh batugamping masif. Peta atribut sweetness, rms amplitude, distribusi fasies serpih-batuan reservoar dan volume serpih memberikan gambaran penyebaran Asosiasi fasies A yang mencirikan pengendapan pada lingkungan paparan karbonat tersebar merata di daerah penelitian sedangkan asosiasi fasies B yang mencirikan pengendapan terumbu berada di tepi Tenggara daerah penelitian. Penelitian ini juga membuktikan bahwa metode SQp dan SQs dapat digunakan untuk diskriminasi serpih dengan reservoar yang mana serpih memiliki rentang nilai SQp lebih dari 0.8 dan nilai SQs sebesar 0.5-0.65. Selain itu, SQp memiliki hubungan linear dengan volume serpih dan menghasilkan sebuah persamaan empiris (R=0.74). SQs memiliki hubungan linear dengan porositas batuan dan menghasilkan sebuah persamaan empiris (R=0.54). Kedua persamaan empiris tersebut dapat digunakan untuk memprediksi volume serpih dan porositas serta penyebarannya. Metode ini juga dapat digunakan untuk mendiskriminasi reservoar pembawa hidrokarbon dengan rentang SQp kurang dari 0.5 dan SQs sebesar 0.6-0.76. Penyebaran porositas bagus dan zona reservoar pembawa hidrokarbon terakumulasi disekitar struktur Sumur K-2 dengan arah penyebaran relatif Timur Laut-Barat Daya. Prospek hidrokarbon dapat diketahui dengan mengintegrasikan peta kontur kedalaman, volume serpih, porositas, dan reservoar pembawa hidrokarbon. Terdapat 2 buah prospek yaitu prospek A yang berada di arah Timur Laut dari Sumur K- 1 dan prospek B yang berada di arah Barat dari Sumur K-1. Pengembangan Lapangan Kutilang dapat dilakukan dengan melakukan pemboran exploration tail.
Kutilang gas field is one of the gas field in East Java. Production decline triggers issues in reserve and economic aspect. Exploration activity is expected to find new resource and reserve which is focused on deeper reservoir target, Kujung I Formation. Hydrocarbon is found by formation evaluation and high gas reading in K-2 well. SQp and SQs hydrocarbon anomaly of K-2 well has same range value as SQp and SQs hydrocarbon anomaly of Offshore Malaysia case. In order that, this study is aimed to identify the distribution of facies, rock property and pore fluid within Kujung I Formation by using prestack simultaneous attribute based attenuation method of SQp and SQs. This study is completed by post stack and prestack 3D seismic and three exploration wells. VpVs ratio and density volume are resulted from simultaneous inversion of all those data. Then, those are calculated to find SQp and SQs. Well based facies analysis results that facies association A composed by limestone and shale and facies association B composed B massif limestone. Most of study area is covered by carbonate platform composed by facies association A while carbonate reef composed by facies association B is situated on southeastern edge of study area. These are well depicted by sweetness map, RMS amplitude map, litofacies map and shale volume map. SQp and SQs method is able to identify the presence of shale facies from reservoir which SQp has a value more than 0.8 and SQs has value ranging from 0.5 to 0.65. Shale volume can be predicted by empirical equation yielding from SQp and shale volume linear relationship (R=0.74). Porosity can be predicted by empirical equation yielding from SQs and porosity linear relationship (R=0.54). Moreover, this method can also discriminate hydrocarbon bearing reservoir from water bearing one which SQp has a value lower than 0.5 and SQs has value ranging from 0.6 to 0.76. Good porosity reservoir and hydrocarbon bearing reservoir distribution is accumulated surrounding of K-2 well with Northeast-Southwest trending. Two prospects are succesfully identified which are situated on Northeastward and Westward of K-1 well by integrating of depth structure map of Kujung I, shale volume map, porosity distribution map, and payzone map. The future development of Kutilang gas field is sugggested by drilling the deeper target reservoir of Kujung I Formation with exploration tail scheme."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2021
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Cecilia Patra Dewanty
"Karbonat Oligosen-Miosen di Cekungan Jawa Timur, atau Formasi Kujung 1, telah memberi kontribusi terhadap penemuan cadangan hidrokarbon sejak tahun 1990-an. Beberapa studi dilakukan untuk karakterisasi reservoar didominasi oleh penggunaan data pre-stack untuk membedakan antar fluida. Dengan adanya ketersediaan data seismik post-stack pada Lapangan “PATRA”, dilakukan integrasi antara analisis petrofisika dan analisis multi-atribut untuk melengkapi hasil inversi seismik post-stack. Studi ini menghasilkan volume petrofisika semu (kandungan serpih, porositas dan saturasi) menggunakan 5 kombinasi atribut seismik yang ditentukan melalui analisis multi-atribut. Atribut ini termasuk atribut eksternal (impedansi akustik hasil inversi berbasis model) dan atribut internal (amplitudo sesaat, frekuensi sesaat, fase sesaat, polaritas semu, frekuensi rata-rata dan frekuensi dominan). Jika atribut impedansi akustik digunakan untuk menghasilkan parameter petrofisika, maka error berkisar pada 32-57%. Penggunaaan multi atribut, dan juga PNN, mengurangi error ini menjadi 32-40% hingga 19-35%. Interpretasi seismik terintegrasi ini memungkinkan untuk delineasi zona interest yang berpotensi. PROMETHEUS dengan ketebalan ~213 ft dan luas 58.268.238 ft2 memiliki rata-rata kandungan serpih, porositas dan saturasi air sebesar 0,12-0,25, 0,3 dan 0,7. Prospek ini memiliki estimasi Hydrocarbon Initially in Place sebesar ~930.835.102 scf.
The Oligocene-Miocene carbonates of the East Java Basin, or the Kujung 1 Fm., have contributed significant hydrocarbon discoveries since the 1990s. Multiple studies conducted for reservoir characterization dominantly use pre-stack information to differentiate fluids. With the availability of post-stack seismic data Field “PATRA”, the integration of petrophysical analysis and multi-attribute analysis is done to enhance the results of post-stack inversion. This study created pseudo-petrophysical volumes (shale content, porosity and water saturation) using 5 combinations of seismic attributes through multi-attribute analysis. These attributes include external attributes (inverted P-Impedance from model-based inversion) and internal attributes (instantaneous amplitude, instantaneous frequency, instantaneous phase, apparent polarity, average frequency and dominant frequency). If a single attribute of P-impedance is used to derive the petrophysical parameter, the error ranges 32-57%. The use of multi attributes, and then PNN, reduced this error to 32-40% to 19-35%. The integration of seismic interpretation made it possible to delineate a potential zone of interest. PROMETHEUS with a thickness of ~213 ft and an area of 58,268,238 ft2 has average shale content, porosity and water saturation value of 0.12-0.25, 0.3 and 0.7. This zone of interest has an estimated Hydrocarbon Initially in Place of ~930,835,102 scf."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2023
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Ratna Pertiwi
"Cekungan Jawa Timur Utara membentang sepanjang lebih dari 600 km dari barat ke timur, dan memanjang sekitar 250 km dari arah utara ke selatan, serta telah menjadi tempat eksplorasi dan eksploitasi minyak sejak seratus tahun lamanya (Lunt, 2013). Pada batas antara Eosen dan Oligosen, Central Deep mulai mengalami pemekaran (rifting), kemudian terjadi subsidensi secara cepat ke kondisi laut sangat dalam dan menangkap sebagian besar sedimen yang sebelumnya tertransport jauh ke arah timur. Daerah penelitian berada di area struktur Central Deep, tepatnya pada formasi Kujung. Formasi tersebut didominasi oleh litologi claystone dengan banyak sisipan tipis karbonat dan batupasir. Penelitian ini bertujuan untuk mengarakterisasi reservoir yang ada pada formasi Kujung (middle Kujung hingga lower Kujung) menggunakan inversi seismik simultan dan transformasi LMR. Metode tersebut akan menghasilkan model properti batuan berupa Zp, Zs, densitas, rigiditas, dan inkompresibilitas, yang dapat digunakan untuk mengetahui sebaran litologi dan kandungan fluida di dalam batuan. Berdasarkan hasil analisis, dapat disimpulkan bahwa hasil inversi simultan mampu mendelineasi zona reservoir karbonat dan batupasir dengan masing-masing nilai parameter sebagai berikut. Reservoir karbonat memiliki nilai impedansi P sebesar 8823 – 11788 (m/s)*(gr/cc), impedansi S 5338 – 6636 (m/s)*(gr/cc), densitas 2.47 – 2.7 gr/cc, dan rasio VpVs paling rendah yaitu 1.63 – 1.8. Sedangkan reservoir batupasir memiliki nilai impedansi P sebesar 7764 – 8823 (m/s)*(gr/cc), impedansi S 4597 – 5338 (m/s)*(gr/cc), densitas 2.33 – 2.47 gr/cc, dan rasio VpVs sebesar 1.75 – 1.99. Hasil transformasi LMR menunjukkan bahwa reservoir yang mengandung hidrokarbon memiliki nilai parameter sebagai berikut. Zona hidrokarbon pada karbonat memiliki nilai inkompresibilitas 31.9 – 34.2 GPA*gr/cc dan riditas 22.7 – 32.1 GPA*gr/cc. Sedangkan zona hidrokarbon pada batupasir memiliki nilai inkompresibilitas 27.9 – 31.9 GPA*gr/cc dan rigiditas 17.4 – 22.7 GPA*gr/cc.
The North East Java Basin extends more than 600 km from west to east, and about 250 km from north to south, has been a place of oil exploration and exploitation for hundred years (Lunt, 2013). At the boundary between the Eocene and the Oligocene, the Central Deep begins to rifted, then subsided rapidly to very deep sea conditions and captures most of the sediment that was previously transported far to the east. The research area is in the Central Deep structure, precisely in the Kujung formation. The formation is dominated by lithology of claystones with many thin interbeds of carbonates and sandstones. This study aims to characterize the reservoir in the Kujung formation (middle Kujung to lower Kujung) using simultaneous seismic inversion and LMR transformation. This method will produce a rock property model in the form of Zp, Zs, density, rigidity, and incompressibility, which can be used to determine the lithological distribution and fluid content of the rocks. Based on the results of the analysis, it can be concluded that the simultaneous inversion result can delineate the carbonate and sandstone reservoir zones with each of the following parameter values. The carbonate reservoir has a P-impedance value of 8823 - 11788 (m/s)*(gr/cc), S-impedance value of 5338 - 6636 (m/s)*(gr/cc), density of 2.47 - 2.7 gr/cc, and the lowest value of Vp/Vs is 1.63 - 1.8. While the sandstone reservoir has a P-impedance value of 7764 - 8823 (m/s)*(gr/cc), S-impedance value of 4597 - 5338 (m/s)*(gr/cc), density of 2.33 - 2.47 gr/cc, and the Vp/Vs of 1.75 - 1.99. The results of the LMR transformation show that the reservoir containing hydrocarbons has the following parameter values. The hydrocarbon zone in the carbonate has an incompressibility value of 31.9 - 34.2 GPA*(gr/cc) and rigidity of 22.7 - 32.1 GPA*(gr/cc). Meanwhile, the hydrocarbon zone in the sandstones has an incompressibility value of 27.9 - 31.9 GPA*(gr/cc) and rigidity of 17.4 - 22.7 GPA*(gr/cc)."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2020
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Thanniza Atika Faurie
"Simultaneous inversion is one of the seismic method which can be used to characterize reservoirs that may also serve as a rock source. In this research, the characterization of shale reservoir is done on the field TAF, in North Sumatra basin with Lower Baong formation as the target formation. A P impedance parameter on the simultaneous inversion method is used to identify the existence of fluids while S Impedance parameter is used to identify the lithology of the target zone. The analysis of the simultaneous inversion is done using partial angle stack method, that which consists of the near angle stack 1 19, the mid angle stack 19 36 and the far angle stack 36 53.
The result of the analysis of the gas chromatography of the well data states that there are 2 layers of lithologies on the Baong Formation that which have the indications of hydrocarbon with each layer having the thickness of less than 5 meters. The result of the simultaneous inversion is obtained, with the value of P impedance ranging from 4000 8000 m s gr cc, the value of S impedance ranging from 1500 3000 m s gr cc and the value of density ranging from 2.2 2.5 g cc. These three values are assumed to correlate with the layer that is dominated by shale. The value of P impedance ranging from 8000 12000 m s gr cc, the value of S impedance ranging from 3000 5700 m s gr cc and the density value ranging from 2.5 2.75 g cc are also obtained that which are situated on the bottom of the Lower Baong formation near the top Belumai and are assumed to correlate with the other lithology that which is dominated by sandstone and carbonate. However, the result of the inversion of P Impedance and the Lambda Rho transformation, as well as the crossplot analysis of AI vs SI and the crossplot of LMR, has no indication of hydrocarbon fluids."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2018
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Kholifatun Nisa
"Karakterisasi reservoir merupakan salah satu tahap penting dalam eksplorasi hidrokarbon agar dapat menentukan reservoir yang baik berdasarkan karakteristik litologi dan kandungan fluida di reservoir. Penelitian ini dilakukan di Lapangan “R”, Cekungan Jawa Timur Utara dengan menggunakan metode inversi simultan. Berdasarkan hasil inversi simultan diketahui bahwa zona reservoir di area penelitian tersusun atas litologi karbonat dengan nilai impedansi-P 26.000 ft/s*g/cc – 35.000 ft/s*g/cc, impedansi-S 8.000 ft/s*g/cc – 22.000 ft/s*g/cc, dan densitas 2. g/cc – 2.39 g/cc. Hasil tersebut ditransformasikan menjadi parameter elastis batuan, yaitu Parameter Lame yang terdiri atas Lambda-Rho dan Mu-Rho. Transformasi Lambda-Mu-Rho berhasil mengidentifikasi reservoir karbonat yang berpotensi mengandung hidrokarbon dengan nilai rigiditas tinggi sebesar 6 GPa*g/cc – 21 GPa*g/cc dan inkompresibilitas rendah sebesar 6 GPa*g/cc – 11 GPa*g/cc yang diinterpretasikan sebagai gas. Integrasi analisis dari parameter impedansi-P, impedansi-S, densitas, Lambda-Rho, dan Mu-Rho menunjukkan bahwa persebaran batuan karbonat yang tersaturasi gas memiliki orientasi timur laut – barat daya.
Reservoir characterization is one of the most crucial stages in hydrocarbon exploration to determine good reservoirs based on their lithology and fluid content. This research was conducted at the “R” Field, North East Java Basin using the simultaneous seismic inversion method. The results show that the reservoir zone in the research area consists of carbonate rocks with P-impedance values of 26.000 ft/s*g/cc – 35.000 ft/s*g/cc, S-impedance of 8.000 ft/s*g/cc – 22.000 ft/s*g/cc, and density of 2.25 g/cc – 2.55 g/cc. These results were transformed into rock elastic parameters, namely Lame Parameters consisting of Lambda-Rho and Mu-Rho. Lambda Mu Rho Transformation has successfully identified carbonate reservoirs that potentially contain hydrocarbons with high rigidity values of 6 GPa*g/cc – 21 GPa*g/cc and low incompressibility of 6 GPa*g/cc – 11 GPa*g/cc interpreted as gas. Integration analysis of P-impedance, S-impedance, density, Lambda-Rho, and Mu-Rho parameters shows that the distribution of gas-saturated carbonate rocks has a northeast – southwest orientation."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2023
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Trevi Jayanti Puspasari
"Lapangan ‘R’ merupakan lapangan eksplorasi yang berada pada Cekungan Jawa Timur Bagian Utara. Data yang digunakan pada studi ini meliputi data seismik darat 2D post stack danpre stack serta data log sumur. Pada data post stack terlihat adanya bright spot sebagai indikator keberadaan hidrokarbon (direct hidrokarbon indicator). Anomali DHI yang muncul pada data post stack memperlihatkan adanya energy atau nilai amplitudo yang membesar disbanding amplitudo sekitarnya. Anomali ini menjadi acuan untuk menganalisa anomali amplitudo terhadapoffset yang dikenal dengan anomali AVO. Fokus studi pada formasi Ngrayong dimana berdasarkan geologi regional merupakan reservoar utama dengan bukti outcrop yang memiliki porositas dan permeabilitas sangat baik.
Analisa AVO dilakukan untuk menjawab penyebab anomali amplitudo apakah dikarenakan perbedaan litologi atau adanya fluida yang mengisi rongga batuan. Rekonstruksi penjalaran gelombang dilakukan dengan mengamati setiap CDP dari berbagai sudut dan offset yang berbeda-beda. AVO inversi melibatkan parameter gelombang S yang sensitive terhadap keberadaan fluida. Pada inversi AVO parameter fisis batuan lain seperti poisson ratio, Mu-rho (μρ), lambda-rho (λρ) dapat dihitung sebagai pendekatan keberadaan zona fluida.
Hasil analisa sumur mengidentifikasi adanya reservoar batupasir terisi gas di formasi Ngrayong pada twt sekitar 717-721 ms untuk R-1, 270 ms - 275 ms pada sumur C-1 dan 968.2 ms - 970 ms pada K-1. Sebaran lateral reservoar berdasarkan hasil analisa integrasi AVO,dapat diamati melalui sebaran geometri reservoar pada lintasan 09TJP-07 yang membentang dari CDP 2507-2486 dan pada 09TJP-17 dari CDP 3606 - 3574.
Hasil inversi P-impedance yang rendah pada twt yang sesuai degan hasil analisa sumur. Hasil Analisa dan Inversi AVO reservoar pada 09TJP-17 dan 09TJP-07 dapat terdeliniasi dengan nilai positif pada bagian atas dan bawah reservoar dan nilai LMR yang kontras pada reservoar terisi gas. Hasil AVO menyimpulkan gas yang mengisi reservoar adalah kelas II dan III yakni memiliki kontras impedansi yang kecil dengan sekitanya dan impedansi bernilai rendah.
This study area located in North Earth Java Basin and it is still explorated. In this study, both seismic data post stack and prestack was provided. There was Direct Hidrocarbon Indicator (DHI) on seismic post stack. This DHI represent there are laterally strong energy or strong amplitude on that spot .DHI anomalies that arise post-stack data showed energy or amplitude value of the enlarged compared to the surrounding amplitude. This anomaly which identifies the anomaly amplitude against an offset known as AVO anomaly. Focus study on Ngrayong formation whereas base on geological regional whereas this formation have good porosity and permeability on outcrop. AVO analysis used to know the causes of the anomaly amplitude is due to differences in lithological or fluid that fills the pore of rocks. Reconstruction of wave propagation is observed every CDP from different angle and offsets. AVO inversion involving S wave parameters that are sensitive to the presence of fluid. With AVO inversion, rock physical parameters such as Poisson ratio, Mu-rho (μρ), lambda-rho (λρ) can be calculated as the approach of fluidzone. Results of well analysis identified the presence of reservoir filled with gas in Ngrayong Formations at around 717-721 ms for R-1, 270 ms - 275 ms in the well C-1 and 968.2 ms - 970 ms in K-1. Lateral reservoir distribution is based on the results of the integration analysis of AVO and Inversion methods, the distribution of reservoir geometry inline 09TJP-07 find at CDP 2507 to 2486 and in 09TJP-17 from CDP 3606 - 3574. The results of inversion P-impedance, low impedance values in accordance with the results of the analysis wells. From AVO methods reservoir on 09TJP-17 and 09TJP-07 can deliniated with positive values at the top and base of the reservoir and contrast LMR on the reservoir gas. Gradient of this target concluded that reservoar fills by gas class II and III which has a low contrast impedance with the surrounding area and have low impedance value."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2015
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Terasia Mayangriani
"[Lapangan “BINTANG” berada di Cekungan Jawa Timur. Formasi target adalah Formasi Ngimbang yang memiliki beberapa zona target dengan ketebalan antara 20-40meter yang berada dibawah ketebalan tuning seismik. Zona-A dan Zona-C merupakan zona target penelitian. Formasi Ngimbang pada daerah penelitian, memiliki lithologi karbonat dan shale, sehingga perlu untuk memisahkan kedua lithologi kedua melalui data seismik. Data sumur test produksi daerah penelitian menunjukkan keberadaan hidrokarbon. Berdasarkan analisa sensitifitas, parameter P-Impedance dan Mu-Rho digunakan untuk memisahkan lithologi daerah penelitian. Daerah reservoar yang merupakan batuan karbonat berada pada nilai P-Impedance dan Mu-Rho kecil diatas cuttoff. Parameter Lambda-Rho*Poisson Ratio digunakan untuk mengidentifikasi sebaran hidrokarbon dimana zona bernilai kecil merupakan daerah yang mengindikasikan sebaran hidrokarbon.
Inversi dilakukan dengan metode Extended Elastic Impedance (EEI) dimana metode ini menghasilkan volum reflektifitas langsung dari parameter yang dipilih. Inversi dengan metode EEI yang diaplikasikan dengan parameter Mu-Rho paling baik menggunakan sudut korelasi -45 dan untuk parameter Lambda-Rho*Poisson Ratio menggunakan sudut 33,5. Proses multiatribut digunakan untuk memprediksi sebaran porositas. Hasil multiatribut menunjukkan bagian utara daerah penelitian merupakan daerah yang lebih dangkal sehingga porositas lebih tinggi dibanding daerah selatan arah
tenggara. Daerah utara masih berada pada bagian lagoonal sedangkan arah selatan-tenggara merupakan outer margin yang semuanya berada pada lingkungan pengendapan platform carbonate.
"BINTANG" field is located in the East Java basin. The target formation is Ngimbang Formation which have several target zones with thickness between 20-40 meters which is below seismic tuning thickness. Zone-A and Zone-C is the target zone. Formation Ngimbang in this study area has carbonate and shale lithology, so that needs to seperate this two lithology by seismic data. From the sensitivity analysis, parameter P-Impedance and Mu-Rho used to separate the lithology in the study area. Carbonate rocks reservoir is at value of PImpedance and Mu-Rho small above the cuttoff. Parameter Lambda-Rho*Poisson Ratio used to identify the distribution of hydrocarbons, which small value area indicates the distribution of hydrocarbons. Inversion is performed using the extended elastic impedance (EEI) method which directly produces the reflectivity volume of the parameters has been selected. Inversion with EEI method which applied with Mu-Rho parameter best correlation angle is -45 and for Lambda-Rho*Poisson Ratio parameter is 33,5. Multiatributte process used to predict the porosity. Multiattribute results show that the northern part of study area is shallow area, that porosity is higher than the southern of the southeast regions. Northern areas are still located on the lagoonal while the south-southeast is the outer margin area which all area in platform carbonate depositional environments.;"BINTANG" field is located in the East Java basin. The target formation is Ngimbang Formation which have several target zones with thickness between 20-40meters which is below seismic tuning thickness. Zone-A and Zone-C is the target zone. Formation Ngimbang in this study area has carbonate and shale lithology, so that needs to seperate this two lithology by seismic data. From the sensitivity analysis, parameter P-Impedance and Mu-Rho used to separate the lithology in the study area. Carbonate rocks reservoir is at value of PImpedance and Mu-Rho small above the cuttoff. Parameter Lambda-Rho*Poisson Ratio used to identify the distribution of hydrocarbons, which small value area indicates the distribution of hydrocarbons.Inversion is performed using the extended elastic impedance (EEI) method which directly produces the reflectivity volume of the parameters has been selected. Inversion with EEI method which applied with Mu-Rho parameter best correlation angle is -45 and for Lambda-Rho*Poisson Ratio parameter is 33,5. Multiatributte process used to predict the porosity. Multiattribute results show that the northern part of study area is shallow area, that porosity is higher than the southern of the southeast regions. Northern areas are still located on the lagoonal while the south-southeast is the outer margin area which all area in platform carbonate depositional environments.;"BINTANG" field is located in the East Java basin. The target formation isNgimbang Formation which have several target zones with thickness between 20-40meters which is below seismic tuning thickness. Zone-A and Zone-C is thetarget zone. Formation Ngimbang in this study area has carbonate and shalelithology, so that needs to seperate this two lithology by seismic data.From the sensitivity analysis, parameter P-Impedance and Mu-Rho used toseparate the lithology in the study area. Carbonate rocks reservoir is at value of PImpedanceand Mu-Rho small above the cuttoff. Parameter Lambda-Rho*PoissonRatio used to identify the distribution of hydrocarbons, which small value areaindicates the distribution of hydrocarbons.Inversion is performed using the extended elastic impedance (EEI) methodwhich directly produces the reflectivity volume of the parameters has beenselected. Inversion with EEI method which applied with Mu-Rho parameter bestcorrelation angle is -45 and for Lambda-Rho*Poisson Ratio parameter is 33,5.Multiatributte process used to predict the porosity. Multiattribute resultsshow that the northern part of study area is shallow area, that porosity is higherthan the southern of the southeast regions. Northern areas are still located on thelagoonal while the south-southeast is the outer margin area which all area inplatform carbonate depositional environments.;"BINTANG" field is located in the East Java basin. The target formation isNgimbang Formation which have several target zones with thickness between 20-40meters which is below seismic tuning thickness. Zone-A and Zone-C is thetarget zone. Formation Ngimbang in this study area has carbonate and shalelithology, so that needs to seperate this two lithology by seismic data.From the sensitivity analysis, parameter P-Impedance and Mu-Rho used toseparate the lithology in the study area. Carbonate rocks reservoir is at value of PImpedanceand Mu-Rho small above the cuttoff. Parameter Lambda-Rho*PoissonRatio used to identify the distribution of hydrocarbons, which small value areaindicates the distribution of hydrocarbons.Inversion is performed using the extended elastic impedance (EEI) methodwhich directly produces the reflectivity volume of the parameters has beenselected. Inversion with EEI method which applied with Mu-Rho parameter bestcorrelation angle is -45 and for Lambda-Rho*Poisson Ratio parameter is 33,5.Multiatributte process used to predict the porosity. Multiattribute resultsshow that the northern part of study area is shallow area, that porosity is higherthan the southern of the southeast regions. Northern areas are still located on thelagoonal while the south-southeast is the outer margin area which all area inplatform carbonate depositional environments.;"BINTANG" field is located in the East Java basin. The target formation isNgimbang Formation which have several target zones with thickness between 20-40meters which is below seismic tuning thickness. Zone-A and Zone-C is thetarget zone. Formation Ngimbang in this study area has carbonate and shalelithology, so that needs to seperate this two lithology by seismic data.From the sensitivity analysis, parameter P-Impedance and Mu-Rho used toseparate the lithology in the study area. Carbonate rocks reservoir is at value of PImpedanceand Mu-Rho small above the cuttoff. Parameter Lambda-Rho*PoissonRatio used to identify the distribution of hydrocarbons, which small value areaindicates the distribution of hydrocarbons.Inversion is performed using the extended elastic impedance (EEI) methodwhich directly produces the reflectivity volume of the parameters has beenselected. Inversion with EEI method which applied with Mu-Rho parameter bestcorrelation angle is -45 and for Lambda-Rho*Poisson Ratio parameter is 33,5.Multiatributte process used to predict the porosity. Multiattribute resultsshow that the northern part of study area is shallow area, that porosity is higherthan the southern of the southeast regions. Northern areas are still located on thelagoonal while the south-southeast is the outer margin area which all area inplatform carbonate depositional environments., "BINTANG" field is located in the East Java basin. The target formation isNgimbang Formation which have several target zones with thickness between 20-40meters which is below seismic tuning thickness. Zone-A and Zone-C is thetarget zone. Formation Ngimbang in this study area has carbonate and shalelithology, so that needs to seperate this two lithology by seismic data.From the sensitivity analysis, parameter P-Impedance and Mu-Rho used toseparate the lithology in the study area. Carbonate rocks reservoir is at value of PImpedanceand Mu-Rho small above the cuttoff. Parameter Lambda-Rho*PoissonRatio used to identify the distribution of hydrocarbons, which small value areaindicates the distribution of hydrocarbons.Inversion is performed using the extended elastic impedance (EEI) methodwhich directly produces the reflectivity volume of the parameters has beenselected. Inversion with EEI method which applied with Mu-Rho parameter bestcorrelation angle is -45 and for Lambda-Rho*Poisson Ratio parameter is 33,5.Multiatributte process used to predict the porosity. Multiattribute resultsshow that the northern part of study area is shallow area, that porosity is higherthan the southern of the southeast regions. Northern areas are still located on thelagoonal while the south-southeast is the outer margin area which all area inplatform carbonate depositional environments.]"
Depok: Fakultas Ekonomi dan Bisnis Universitas Indonesia, 2014
T43395
UI - Tesis Membership Universitas Indonesia Library
Santi Widayati
"Lapangan FM merupakan salah satu lapangan penghasil hidrokarbon yang terletak di Cekungan Jawa Barat Utara. Salah satu Formasi yang berpotensi sebagai penghasil hidrokarbon adalah Formasi Cibulakan berupa batupasir dan batugamping yang menjadi reservoar objektif. Untuk memprediksi penyebaran reservoar batupasir digunakan metode multi-atribut seismik. Metode multi-atribut merupakan metode untuk memprediksi reservoar. Prediksi tersebut didapat dari hubungan fisis diaplikasikan dengan properti atribut dari data seismik.
Berdasarkan analisa crosplot diketahui bahwa log gamma-ray dan density merupakan parameter yang sensitif terhadap keberadaan reservoar batupasir. Metode multi-atribut digunakan dalam membuat volume pseudo gamma-ray dan density. Kombinasi antara gamma-ray dengan density dapat memisahkan dengan baik antara batupasir, batu gamping dan batu lempung.
Hasil pemetaan menunjukkan reservoar batupasir terdistribusi pada daerah Tinggian. Hasil penelitian ini dapat digunakan untuk eksplorasi lebih lanjut dalam penyebaran reservoar pada Formasi Cibulakan di Lapangan FM.
Field FM is one of the hydrocarbon-producing field located in the North West Java Basin. One of the potential formation of hydrocarbon-producing formations are sandstones and limestones Cibulakan form the reservoir objective. To predict the spread of reservoir sandstones research using multi-attribute seismic methods. Multi-attribute method is a method for predicting reservoir parameters. The predictions obtained from the physical relationship was applied to the property attribute of the seismic data. Based on the analysis crosplot known that gamma-ray logs and density are parameters which are sensitive to the presence of reservoir sandstones. Multi-attribute method is used to predict the pseudo volume of gamma-ray and density. The combination of gamma-ray logs with density can separate well between sandstone, limestone and claystone. Mapping results indicate reservoir sandstones in the area of distributed Tinggian. The results can be used for further exploration in the spread of the Formation reservoir in the Field Cibulakan FM."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2013
S-Pdf
UI - Skripsi Membership Universitas Indonesia Library
Cattleya Randi
"Penelitian dilakukan pada reservoir batupasir di Lapangan "Deju" Formasi Talang Akar, Sub Cekungan Ciputat, Jawa Barat Utara. Struktur geologi yang berkembang di daerah penelitian adalah setengah graben dengan fasies pengendapan yang berkembang dari endapan fluvio-delta hingga endapan laut dangkal di puncak formasi Talang Akar. Karakterisasi waduk di lapangan sangat penting terutama dalam menentukan zona prospek waduk yang akan dikembangkan. Oleh karena itu, identifikasi sebaran litologi batuan reservoir dilakukan dengan menggunakan metode inversi seismik post stack dan sifat fisik reservoir menggunakan analisis petrofisika dapat memudahkan interpreter dalam mengkarakterisasi suatu reservoir. Metodologi penelitian meliputi pengolahan data seismik dan wireline logging, interpretasi horizon dan sesar, pembuatan peta struktur waktu, inversi seismik, dan analisis parameter petrofisika. Dengan metode inversi impedansi akustik seismik didapatkan bahwa trend sebaran reservoir batupasir hanya terkonsentrasi disekitar cekungan dengan range nilai impedansi akustik berkisar antara (8600 - 11000) (m / s) * (g / cc). Dalam perhitungan petrofisika diketahui bahwa sumur LL1 dan LL3 memiliki prospek hidrokarbon yang relatif baik, sedangkan sumur LL4 merupakan sumur prospek non hidrokarbon (dry hole).
The research was conducted at a sandstone reservoir in the "Deju" Field of the Talang Akar Formation, Ciputat Sub Basin, North West Java. The geological structure that develops in the study area is a half graben with depositional facies that develops from fluvio-deltaic deposits to shallow marine deposits at the top of the Talang Akar formation. Reservoir characterization in the field is very important, especially in determining the zone of the reservoir prospect to be developed. Therefore, identification of reservoir rock lithology distribution is carried out using post stack seismic inversion method and reservoir physical properties using petrophysical analysis can facilitate interpreters in characterizing a reservoir. The research methodology includes seismic data processing and wireline logging, interpretation of horizons and faults, creation of time structure maps, seismic inversion, and analysis of petrophysical parameters. With the seismic acoustic impedance inversion method, it is found that the distribution trend of the sandstone reservoir is only concentrated around the basin with a range of acoustic impedance values ranging from (8600 - 11000) (m / s) * (g / cc). In petrophysical calculations, it is known that LL1 and LL3 wells have relatively good hydrocarbon prospects, while LL4 wells are non-hydrocarbon prospects (dry hole)."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2019
S-Pdf
UI - Skripsi Membership Universitas Indonesia Library
Novarie
"Analisa atribut seismik adalah metoda yang menggunakan semua data seismik, yang merepresentasikan karakterisasi dari gelombang seismik berupa amplitudo, frekuensi, dan fasa. Amplitudo merupakan salah satu atribut dasar dari trace seismik yang dapat digunakan untuk mengetahui persebaran dari distribusi reservoar (karbonat). Persebaran dari reservoar karbonat umumnya diindikasikan dengan nilai amplitudo yang rendah. Analisa atribut ini diaplikasikan pada data seismik 2D dan 2 buah data sumur pada Cekungan Jawa Barat-Utara, Lapangan Mendawai, Formasi MMC. Analisa difokuskan pada satu horison yang dianggap sebagai reservoar. Peta distribusi reservoar dapat dilihat pada peta Amplitudo RMS dan Maksimum yang memiliki nilai amplitudo rendah. Hasilnya menunjukkan bahwa distribusi reservoar dapat dipetakan dengan mudah dalam pengertian secara geologi.
Seismic attribute analysis is a method that uses all seismic data information, which represents the characteristic of seismic wave including amplitude, frequency and phase. Amplitude is one of the basic attributes of seismic trace that can be used to delineate reservoir (carbonate) distribution. It can be understood, since the carbonate reservoir is commonly indicated by low amplitude. This attribute analysis has been applied to 2D seismic data and 2 well log data of North-West Java Basin, Mendawai Field, MMC formation. The analysis is focus on one horizon, which is believed as target reservoir. RMS amplitude and maximum amplitude is derived to map carbonate distribution, which is associated with low amplitude. The results show that reservoir distribution can be easily mapped in the meaning of geology."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2009
S29309
UI - Skripsi Open Universitas Indonesia Library