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Feri Kurniawan
"Untuk menentukan konseptual model dan rekomendasi titik pengeboran pada daerah panasbumi "O", dilakukan penelitian dengan memadukan inversi MT 3-Dimensi, data geologi dan geokimia. Satuan batuan daerah penelitian didominasi batuan lava berumur quarter. Struktur yang muncul berarah NW-SSE berkorelasi dengan kemunculan manifestasi. Diagram Ternary Cl-SO4-HCO3 mengindikasikan manifestasi AP-1 bersifat volcanic waters. Pendugaan temperature reservoir menggunakan geothermometer Na/K bernilai 202 ndash; 219 oC. Berdasarkan manifestasi dan geokimia didapatkan sistem geothermal adalah hydrothermal systems associated with high standing volcanic centers. Area upflow ditunjukkan pada manifestasi AP-1 dan F, sedang manifestasi AP-2, AP-3 dan AP-4 merupakan tipe manifestasi outflow. Analisis geofisika menggunakan 40 titik ukur magnetotellurik dan 213 titik ukur gravitasi.
Hasil cross power data MT terdapat 3 titik very good, 36 titik good, dan 1 titik fair. Hasil inversi 3D MT, zona claycap memiliki resitiviti 100 ?m. Berdasarkan perhitungan parasnis data gravitasi, nilai densitas rata-rata 2.46 gr/cc. Konseptual model geothermal didapatkan zona reservoir membentuk updome dengan ketinggian -700 m, zona claycap menutupi reservoir pada kedalaman 500 s.d -1500 di NW dan -2000 m di arah SW. Heat source pada kedalaman -3000 s.d >-4000 m. Prospek panasbumi didasarkan pada base of conductor diperoleh luas 7.5 km2. Rekomendasi 2 titik pengeboran tepat di updome reservoir, sumur O-1 dibor tegak lurus dan sumur O-2 ke arah NW.

To determine the conceptual models and drilling recommendations in the geothermal area O , research by combining 3 D MT inversion, geochemical and geological data. Area of research are dominated by lithologies of lava rocks quarter. Appears of manifestations correlation with structure NW SSE. Ternary diagram Cl SO4 HCO3 indicates manifestation AP 1 is volcanic waters. Prediction of reservoir temperature using Geothermometer Na K has 202 219 oC. Based on the obtained geochemical manifestations the geothermal systems are hydrothermal systems associated with high standing of volcanic centers. Upflow area shown on the manifestation of AP 1 and F, were manifestations of AP 2, AP 3 and AP 4 is a type of outflow. Geophysical analysis using magnetotelluric measuring 40 points and 213 points of gravity.
The results of cross power of data MT 3D had 3 points are very good, 36 point good, and one fair point. 3D MT inversion results, claycap zone has resitivity 100 m. Based on the calculation parasnis gravity data, the average density values 2.46 gr cc. The conceptual model of the geothermal reservoir zone formed updome obtained with a height of 700 m, claycap zone covering the reservoir at a depth of 500 until 1500 in NW and 2000 m in direction SW. Heat source at the depth of 3000 s.d 4000 m. Geothermal prospects based on base of conductor are obtained 7.5 km2. Two point of drilling recommendation on top of updome reservoir, wells O 1 drill vertical and O 2 towards to NW.
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Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2017
T47440
UI - Tesis Membership  Universitas Indonesia Library
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Bambang Purbiyantoro
"Terdapat dua prospek panas bumi di sekitar Gunung Slamet, yaitu prospek Guci di sebelah barat laut dan prospek Baturaden di sebelah selatan dari Gunung Slamet. Menjadi sangat menarik untuk mengetahui hubungan kedua prospek tersebut, apakah prospek tersebut merupakan dua daerah prospek yang dipisahkan oleh tinggian low permeability barrier sehingga tidak akan terjadi interferensi diantara kedua prospek?
Dengan melakukan deliniasi zona permeabel berdasarkan analisis data magnetotelurik dan data gravity dikorelasikan dengan data struktur geologi permukaan dan data manifestasi permukaan yang ada, diharapkan dapat mengetahui hubungan diantara kedua prospek tersebut.
Dalam penelitian ini dilakukan pemrosesan dan pemodelan data geofisika menggunakan metode magnetotelurik inversi 2-D dan metode gravity 2-D forward. Pemodelan ini sangat efektif dalam mendeteksi zona-zona dengan kontras resistivitas tinggi untuk mendeliniasi zona permeabel lapangan panas bumi. Daerah prospek panas bumi Gunung Slamet dapat terdeliniasi dengan jelas berdasarkan beberapa penampang lintasan yang dibuat, yang menunjukkan daerah prospek berada di sisi sebelah barat Gunung Slamet dengan luas berdasarkan peta BOC sekitar 13 km2, dan berdasarkan peta resistivitas pada elevasi 0 meter yang dikombinasikan dengan peta struktur geologi luas daerah prospek sekitar 22 km2.
Dan hasil akhir dari penelitian ini adalah memberikan rekomendasi dalam menentukan lokasi pemboran, dengan sebelumnya membuat model konseptual prospek panas bumi Gunung Slamet.

There are two geothermal prospects in the vicinity of Mount Slamet, the prospect of Guci in northwest and prospects Baturaden in the south of Mount Slamet. Be very interesting to know the relationship between the two prospects, whether the prospect of two regions separated by low permeability barrier heights so that there will be no interference between the two prospects?
By doing permeable zone delineation based on data analysis magnetotelluric and gravity, correlated with surface geological structural data and existing surface manifestations, are expected to know the relationship between the two prospects.
In this research, processing and modeling of geophysical data using magnetotelluric inversion method 2-D and 2-D method of gravity forward. Modeling is very effective in detecting zones with high resistivity contrast to delineate the permeable zone geothermal field. Geothermal prospect areas of Mount Slamet can be delineated clearly based on some of the tracks that made cross-section, showing the prospect area is located on the west side of Mount Slamet with broad based map BOC about 13 km2, and resistivity maps based on elevation of 0 meters, combined with the structure geological maps, the prospect area about 22 km2.
And the end result of this study is to provide recommendations in determining the location of drilling, with previous a conceptual model of geothermal prospects Mount Slamet.
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Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2014
T-43405
UI - Tesis Membership  Universitas Indonesia Library