Hasil Pencarian  ::  Simpan CSV :: Kembali

Hasil Pencarian

Ditemukan 5 dokumen yang sesuai dengan query
cover
Fatima Septi Sundari
"[ABSTRAK
Lapangan XXX merupakan lapangan minyak di cekungan Natuna Barat
dengan reservoir utama berupa reservoir batu pasir. Ketebalan reservoir pada
lapangan ini sangat bervariasi sehingga hasil inversi hanya dapat memetakan
ketebalan reservoir yang mendekati ketebalan tuning.
Berdasarkan uji sensitifitas, parameter AI di setiap sumur tidak dapat
membedakan hidrokarbon, sehingga parameter akustik saja tidak dapat diaplikasikan
dalam karakterisasi reservoir lapangan ini. Namun ketika parameter densitas terpisah
dengan parameter kecepatan P, sebaran hidrokarbon dapat dibedakan dengan baik.
Kecepatan S tidak tersedia di semua sumur padahal data ini sangat diperlukan
untuk melakukan pengolahan data dengan metode inversi simultan. Oleh karena itu
akan dilakukan beberapa estimasi untuk mendapatkan data kecepatan S antara lain
dengan metode castagna, metode gassmann, metode parsial, metode Xu-White dan
metode Lee. Data kecepatan S yang dipakai adalah kecepatan S terbaik yang
diperoleh dari metode Xu White dikarenakan hasil log poisson?s rationya paling
mendekati tren kurva saturasi air. Selain itu aspek rasio batuan yang
mempertimbangkan nilai porositas dan volume clay, serta kontrol kualitas Vp model
dari metode Xu-White memiliki rasio error minimum jika dibandingkan dengan nilai
Vp dari data log.
Metode inversi simultan dengan data pre-stack atau partial stack
memungkinkan dilakukannya prediksi parameter Impedansi P, Impedansi S, dan
densitas dari data seismik. Selain itu meode inversi simultan dapat dipergunakan
multi wavelet dalam pengolahan datanya. Hasil penampang inversi yang diperoleh
menunjukkan bahwa inverse densitas dapat menjelaskan letak sebaran batuan
reservoir dan fluida berdasarkan cut off sensitifitas yakni nilai dibawah 2,26 gr/cc.

ABSTRACT
X field is an oil field in West Natuna Basin with sandstone reservoir as
primary target. There was varying reservoir thickness, so the inversion method that
could only be applied to map reservoir thickness, which close to tuning thickness.
Based on sensitivity analysis, Acoustic Impedance parameters couldn?t
indicate hydrocarbon appearance for each well, so Acoustic Impedance cannot be
applied for reservoir characterization in this field. Density versus Acoustic
Impedance could map hydrocarbon appearance.
Shear velocity weren?t available where those data was needed for running
simultaneous inversion method. Predicting velocity shear would be carried out by
using several method such as Castagna, Gassmann, Parsial, Xu-White, and Lee. The
best estimated velocity shear would be used for inversion, The best estimated shear
velocity from Xu-White method because Xu-White?s poisson ratio log presents
similar trend with water saturation log (Sw). Moreover, Xu-White?s ratio aspect is
also considering porosity and clay volume value. Based on quality control result, Vp
model of Xu-White had minimum error ratio compared to Vp from log.
Simultaneous inversion with pre-stack and parsial stack data what can be used
for predicting P-Impedance, S-Impedance, and density from seismic data. Otherwise,
this method is also used not only for single wavelet but also multi wavelet. The
inversion result from this study can mapping out the hydrocarbon appearance for
reservoir target based on cut off value from sensitivity test of less than 2,26 gr/cc.;X field is an oil field in West Natuna Basin with sandstone reservoir as
primary target. There was varying reservoir thickness, so the inversion method that
could only be applied to map reservoir thickness, which close to tuning thickness.
Based on sensitivity analysis, Acoustic Impedance parameters couldn?t
indicate hydrocarbon appearance for each well, so Acoustic Impedance cannot be
applied for reservoir characterization in this field. Density versus Acoustic
Impedance could map hydrocarbon appearance.
Shear velocity weren?t available where those data was needed for running
simultaneous inversion method. Predicting velocity shear would be carried out by
using several method such as Castagna, Gassmann, Parsial, Xu-White, and Lee. The
best estimated velocity shear would be used for inversion, The best estimated shear
velocity from Xu-White method because Xu-White?s poisson ratio log presents
similar trend with water saturation log (Sw). Moreover, Xu-White?s ratio aspect is
also considering porosity and clay volume value. Based on quality control result, Vp
model of Xu-White had minimum error ratio compared to Vp from log.
Simultaneous inversion with pre-stack and parsial stack data what can be used
for predicting P-Impedance, S-Impedance, and density from seismic data. Otherwise,
this method is also used not only for single wavelet but also multi wavelet. The
inversion result from this study can mapping out the hydrocarbon appearance for
reservoir target based on cut off value from sensitivity test of less than 2,26 gr/cc., X field is an oil field in West Natuna Basin with sandstone reservoir as
primary target. There was varying reservoir thickness, so the inversion method that
could only be applied to map reservoir thickness, which close to tuning thickness.
Based on sensitivity analysis, Acoustic Impedance parameters couldn’t
indicate hydrocarbon appearance for each well, so Acoustic Impedance cannot be
applied for reservoir characterization in this field. Density versus Acoustic
Impedance could map hydrocarbon appearance.
Shear velocity weren’t available where those data was needed for running
simultaneous inversion method. Predicting velocity shear would be carried out by
using several method such as Castagna, Gassmann, Parsial, Xu-White, and Lee. The
best estimated velocity shear would be used for inversion, The best estimated shear
velocity from Xu-White method because Xu-White’s poisson ratio log presents
similar trend with water saturation log (Sw). Moreover, Xu-White’s ratio aspect is
also considering porosity and clay volume value. Based on quality control result, Vp
model of Xu-White had minimum error ratio compared to Vp from log.
Simultaneous inversion with pre-stack and parsial stack data what can be used
for predicting P-Impedance, S-Impedance, and density from seismic data. Otherwise,
this method is also used not only for single wavelet but also multi wavelet. The
inversion result from this study can mapping out the hydrocarbon appearance for
reservoir target based on cut off value from sensitivity test of less than 2,26 gr/cc.]"
2012
T-Pdf
UI - Tesis Membership  Universitas Indonesia Library
cover
Seno Budi Giyatno
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2004
T39720
UI - Tesis Membership  Universitas Indonesia Library
cover
Sandra Widyastuti
"Penelitian dilakukan pada lapangan 'Sandara' yang terletak kurang lebih 22 km di sebelah timur laut kota Cepu pada Cekungan Jawa Timur Utara. Tujuan penelitian ini adalah untuk mengidentifikasi perbedaan batupasir formasi Ngrayong pada horison L1 dan L5 serta mengetahui karakteristik reservoar batupasir tersebut dengan memanfaatkan data seismik 3D yang dianalisis dengan metode inversi seismik impedansi akustik berbasis model dan data log sumur SAN-01, SAN-02, SAN-04, dan SAN-07 yang di analisis petrofisika dengan metode determin. Hasil menjelaskan bahwa batu pasir pada area sekitar sumur SAN-01, SAN-02 dan SAN-04 yang terdapat di sebelah barat laut area penelitian merupakan reservoar dengan kandungan lempung bernilai antara 30 - 50%, saturasi air antara 60 - 70%, dengan porositasnya bernilai 15 - 20%, permeabilitasnya bernilai lebih dari 250 mD, dan nilai impedansi akustiknya kurang dari 7000 m/s*gr/cc. Sedangkan area yang berada disekitar sumur SAN-07 mengarah sebelah tenggara area penelitian mendeskripsikan reservoar dengan nilai kandungan lempung bernilai rendah yaitu 30%, namun nilai saturasi air bernilai cukup tinggi mendekati 90%, nilai porositasnya lebih rendah yaitu sebesar 10%, permeabilitasnya juga lebih rendah bernilai dari 163 mD dan nilai impedansi akustiknya lebih dari 8000 m/s*gr/cc. Berdasarkan hasil analisa petrofisika dan inversi impedansi akustik, rekomendasi titik bor selanjutnya dapat disarankan pada daerah yang dangkal (di area puncak antiklin), memiliki nilai impedansi di bawah 7000 m/s*g/cc dan berada di sekitar sumur SAN-01, SAN-02, SAN-04.

The study has been held in 'Sandara' field which located approximately 22 km in the northeast of Cepu region, Northeast Java Basin. The purpose of this study are to identify differences in the sandstone formations of Ngrayong L1 and L5 horizon and to determine the characteristics of the sandstone reservoir by utilizing 3D seismic data that is analyzed with acoustic impedance seismic inversion method based on model and log data from SAN-01, SAN-02, SAN-03, and SAN-04 wells in petrophysical analysis by determin method. The results is the sandstone around SAN-01, SAN-02, and SAN-04 wells have composition of shale volume is between 30 - 50%, water saturation is between 60 - 70%, the porosity value is between 15 - 20%, the permeability is above 250 mD, and the acoustic impedance is bellow 7000 m/s*gr/cc. Meanwhile, the area around SAN-07 well or the area which is located in the southeast direction of the study area have composition of shale volume is around 30%, water saturation is almost 90%, the porosity value is near 10%, the permeability is at 163 mD, and the acoustic impedance is above 8000 m/s*gr/cc. Based on the petrophysical analysis and the acoustic impedance seismic inversion results, the recommendations of the next drilling point are suggested in the crest of the anticline area and have an impedance value below 7000 m/s*g/cc, and located near the SAN-01, SAN-02, SAN-04 wells.
"
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2016
T44950
UI - Tesis Membership  Universitas Indonesia Library
cover
Ivana Debora
"Inversi Extended Elastic Impedance (EEI) merupakan teknik inversi seismik yang secara optimal dapat memprediksi karakter dan keberadaan reservoar hidrokarbon dengan perluasan sudat datang gelombang dari -90° hingga 90°. Pada penelitian Lapangan ?Q? Sub-Cekungan Jambi, inversi EEI mampu mengkarakterisasi reservoar batupasir dan memprediksi keberadaan gas maupun minyak melalui parameter Vp/Vs ratio, lambda-rho dan mu-rho. Dalam inversi EEI dilakukan korelasi untuk mencari nilai korelasi maksimum pada sudut chi (χ) tertentu dari setiap parameter dengan melakukan korelasi antara log EEI dengan log target. Nilai sudut chi (χ) optimum atau best-chi agle ini kemudian digunakan untuk membuat volume scaled reflectivity yang dipakai dalam pembuatan model awal dan juga inversi. Proses inversi dilakukan dengan menggunakan inversi post-stack model based yang baik digunakan pada reservoar lapisan tipis. Hasil inversi selanjutnya digunakan untuk mengetahui penyebaran reservoar dimana hasilnya menunjukkan adanya kemungkinan resevoar yang mengandung gas dan minyak. Pada penelitian, nilai Vp/Vs ratio berkisar antara 16-18, nilai mu-rho berkisar antara 25-35 (GPa*(g/cc)) dan lambda-rho untuk gas berkisar antara 20-22 (GPa*(g/cc)) dan lambda-rho untuk minyak berkisar 25-27 (GPa*(g/cc)).

Extended Elastic Impedance (EEI) inversion method is a seismic inversion technique that optimally can predict the character and the presence of hydrocarbon reservoir with the expansion of the angle?s coming wave from -90 ° to 90 °. In the field of research 'Q' Sub-Basin Jambi, EEI is able to characterize sandstones reservoir and predict the existence of gas or oil through the parameter of Vp / Vs ratio, lambda-rho and mu-rho. EEI is performed in correlation to seek the maximum correlation value at an optimum chi (χ) angle of each parameter specified by the correlation between the targets? logs with the EEI?s logs. Optimum chi (χ) angle or a best-chi angle is then used to create a scaled volume reflectivity that is used in making the initial model and also in inversion process. Inversion is done using post-stack inversion based model which is best used on thin reservoir layer. Inversion results are then used to determine the spread of the reservoir where the results indicate the possibility resevoar containing gas and oil. In the study, the value of Vp / Vs ratio ranged between 16-18, the mu-rho values ​​ranged between 25-35 (GPa * (g / cc)), the lambda-rho values for gas ranged between 20-22 (GPa * (g / cc)) and for oil ranged between 25-27 (GPa * (g / cc)).
"
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2016
S63452
UI - Skripsi Membership  Universitas Indonesia Library
cover
Sirait, Chrisnawaty
"Inversi seismik konvensional yang menghasilkan penampang impedansi akustik kini terbatas dalam mengidentifikasi litologi. Telah dilakukan inversi prestack yakni simultaneous inversion yang mampu memprediksi tidak hanya parameter impedansi akustik, tetapi juga impedansi shear, dan densitas untuk mengatasi hal tersebut. Dengan memperoleh ketiga parameter tersebut, akan dapat diperoleh paramater lame berupa lamda-rho dan mu-rho yang lebih sensitif terhadap litologi dan fluida untuk mempertajam indentifikasi litologi maupun fluida reservoar.
Inversi simultan, yang bertujuan mengkarakterisasi reservoar batupasir dan penyebaran gas ini, dilakukan pada kasus Lapangan ?C‟ yang terletak di Cekungan Natuna Barat. Inversi dilakukan pada data angle stack baik itu near angle stack (5o-15o), mid angle stack (15o-25o), dan far angle stack (25o-35o) dengan dua kontrol sumur yakni sumur CS-1 dan CSR-3. Inversi yang dilakukan juga meliputi analisis lambda-rho dan mu-rho yang diturunkan dari parameter impedansi akustik dan impedansi shear.
Hasil yang diperoleh adalah penyebaran reservoar batupasir dapat diprediksi dengan menggunkan parameter impedansi shear dan mu-rho dengan cut off impedansi shear ± 3300 m/s*g/cc dan cut off mu-rho ± 11 GPa*g/cc sementara keberadaan gas dapat diprediksi dengan menggunakan parameter lambda-rho dan VpVs ratio dengan cut off lambda-rho ± 11 - 20 GPa*g/cc dan cut off VpVs ratio ± 1.8. Dengan demikian, reservoar batupasir dapat diperkirakan terletak di sekitar inversion anticline dengan pola pengendapan channel yang berada di sebelah tenggara daerah penelitian.

Conventional seismic inversion that produces cross-sectional acoustic impendance is limited in identifying lithology. Prestack inversion i.e.simultaneous inversion that is capable of predicting not only acoustic impedance parameter, but also the shear impedance and density has been applied to solve that problem. By obtaining these three parameters, we can get the parameters of lambda-rho and mu-rho that are more sensitive to lithology and fluid to sharpen the identification of lithology and fluid reservoir.
Simultaneous inversion, that aims to characterize the sandstone reservoir and the distribution of gas, done in the case of ?C‟ Field located in the West Natuna Basin. Inversion performed on the data near angle stack (5o-15o), mid angle stack (15o-25o), and far angle stack (25o-35o) with two control wells CS-1 and CSR-3. Inversion carried out also includes the analysis of lambda-rho and mu-rho derived from the acoustic impedance and shear impedance.
The obtained results are the distribution of sandstone reservoir can be predicted using the parameter of shear impedance and mu-rho with shear impedance cut off ± 3300 m/s*g/cc & mu-rho cut off ± 11 GPa*g/cc while the presence of gas can be predicted by using the parameter of lambda-rho and VpVs ratio with lambda-rho cut off ± 11 - 20 GPa*g/cc & VpVs ratio cut off ± 1.8. Thus, estimated sandstone reservoir is located around inversion anticline with the channel deposition in the southeast area of research.
"
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2012
S43407
UI - Skripsi Open  Universitas Indonesia Library