Hasil Pencarian  ::  Simpan CSV :: Kembali

Hasil Pencarian

Ditemukan 143621 dokumen yang sesuai dengan query
cover
Fahrian Elfinurfadri
"Eksplorasi pada daerah prospek geothermal bertujuan untuk mencari zona reservoir, kriteria zona reservoir yang baik yaitu memiliki temperatur, tekanan dan permeabilitas yang tinggi. Penentuan zona reservoir perlu dilakukan kegiatan survei terpadu 3G meliputi survei geologi, geokimia dan geofisika. Pada lapangan geothermal daerah "F" menggunakan metode remote sensing untuk memetakan struktur dan alterasi di permukaaan. Analisis geokimia digunakan untuk mengetahui karakteristik sistem geothermal dan analisis geofisika digunakan untuk memetakan kondisi sistem geothermal di bawah permukaan. Berdasarkan analisis remote sensing dengan menggunakan teknik band combination secara pengamatan manual diketahui bahwa arah utama dari kelurusan daerah penelitian "F" adalah Barat Laut ndash; Tenggara. Kelurusan ini berkorelasi dengan kemunculan manifestasi permukaan.
Analisis data geokimia menunjukkan bahwa pemetaan zona upflow di tunjukkan oleh kemunculan manifestasi Kaipohan dan hot spring tipe sulfat SO4 , sedangkan zona outflow di tinjukkan dengan kemunculan manifestasi hot spring dengan tipe fluida bikarbonat HCO3 . Data geofisika menggunakan 46 data titik ukur magnetotellurik yang selanjutnya di analisis melalui pola kurva splitting, arah elongasi polar diagram serta melakuian inversi 3D. Berdasarkan analisis tersebut maka diketahui struktur lapisan bawah permukaan dari clay cap dengan nilai resistivitas rendah, reservoir dan heat source. Hasil akhir dari penelitian ini juga akan memberikan implikasi terhadap upaya peningkatan Drilling Success Ratio DSR dalam pemboran dan mengurangi risiko pada tahapan eksplorasi.

Exploration in the geothermal prospect area aims to find the reservoir zone, a good reservoir zone criterion are has high temperature, pressure, and permeability. Determination of reservoir zones needs to be carried out by a 3G integrated survey activity covering geological, geochemical and geophysical surveys. In the geothermal field 39 F 39 , survey is conducted using a remote sensing method to map the structure and alteration on the surface. Geochemical analysis is used to determine the characteristics of geothermal systems and geophysical analysis used to map the condition of geothermal systems beneath the surface. Based on remote sensing analysis by using band combination technique by manual observation, it is known that the main direction of research area ldquo F rdquo straightness is Northwest Southeast. This straightness correlates with the appearance of surface manifestations.
Analysis of geochemical data showed that upflow zone mapping was demonstrated by the emergence of kaipohan and hot spring type sulfate manifestations SO4 , while the outflow zone was presented by the appearance of hot spring manifestation with bicarbonate fluid type HCO3 . Geophysical data uses 46 data of magnetotellurik measuring point which then analyzed by splitting curve pattern, direction of polar diagram elongation, and 3D inversion. Based on these analyzes, it is known that the subsurface structure of clay cap has low resistivity value, reservoir, and heat source. The final results of this study will also provide implications for improving Drilling Success Ratio DSR in drilling and reducing risks at the exploration stage.
"
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2017
T47880
UI - Tesis Membership  Universitas Indonesia Library
cover
Indah Novitasari
"Telah dilakukan penelitian guna mendelineasi zona reservoir daerah prospek geothermal "I" berdasarkan data audio magnetotellurik dan gravity, yang dipadu dengan data geologi dan geokimia. Penelitian ini difokuskan pada analisa zona reservoir menggunakan data geofisika audiomagnetotelurik dan gravity. Analisa geologi menggunakan metode remote sensing untuk memetakan struktur di permukaaan. Analisis geokimia digunakan untuk mengistimasi temperatur reservoir, jalannya fluida, dan karakteristik fluida pada sistem geothermal.Berdasarkan analisis remote sensing menggunakan ASTER DEM dan Landsat 8 dilakukan penarikan lineament secara pengamatan manual maka diketahui bahwa arah utama dari kelurusan yang berkembang di daerah prospek geothermal "I" adalah Barat Laut ndash; Tenggara 135 degrees. Kelurusan ini berkorelasi dengan kemunculan manifestasi mata air panas. Analisis data geokimia menunjukkan bahwa manifestasi manifestasi yang muncul di KMP-1, KMP-2, KMP-3, KMP-4,KMP-5, dan KP-2 memiliki pH netral. Geotermometer liquid menunjukan temperatur reservoar sekitar 180 C.Analisis data geofisika menggunakan 31 data titik ukur audio magnetotellurik dan 198 titik ukur gravitasi.
Berdasarkan inversi 3D data AMT dan forward modelling gravitasi terdapat lapisan penudung cap rock dengan nilai resistivitas rendah le; 20 ?m dan densitas 2.2 gr/cc. Batuan cap rock sudah terlihat mulai dari permukaan dan menebal ke arah manifestasi mata air panas KH dan KM dengan kedalaman sekitar 500 meter dengan ketebalan 500 meter hingga 1000 meter. Di bawah batuan cap rock terdapat batuan reservoir dengan nilai resistivitas sedang >20 s.d 65 ?m dan densitas 2,67 gr/cc. Batuan ini diinterpretasikan sebagai respon dari Jatiluhur shale. Lapisan heat source berada di bawah reservoir dengan nilai resistivitas >100 ?m. Top of Reservoir TOR diperkirakan berada pada kedalaman 800 m dari permukaan yang teridentifikasi pada elevasi 0 meter. Luas zona prospek sebesar 0.5 km2 yang berada tepat di bawah Gunung "I".

The research had been conducted to delineate reservoir zone in geothermal prospect area ldquo I rdquo based on audio magnetotelluric and gravity data supported by geology and geochemistry data. This research used audiomagnetotelluric and gravity method to analize reservoir zone. Geology analisys using remote sensing method are used to map the structure on the surface. Geochemical analysis are used to estimate reservoir temperature, fluid flow, fluid chraracteristic fluid in the geothermal system.Based on the remote sensing analysis by using ASTER DEM and Landsat 8 map in manual observation, the main direction of lineament developed in area ldquo I rdquo is West North ndash East South 135 degrees. This lineament is corelated to the appearance of hot springs. The geochemical data analysis shows that hot spring manifestation is the outflow type manifestation which appear in KMP 1,KMP 2, KMP 3, KMP 4, KMP 5, and KP 2 have neutral pH. Liquid geothermometer shows that the reservoir temperature is about 180 C.The analysis of geophysics data uses 31 audio magnetotelluric stations and 198 gravity stations.
Based on 3D AMT data inversion and gravity forward modelling, there is cap rock layer with low resistivity le 20 m and density 2.2 gr cc. The Cap rock layer finds in the surface and thickened toward hotspring KH and KM manifestation with depth about 500 meters with thickness 500 meters up to 1000 meters. Under cap rock layer, there is reservoir rock layer with medium resistivity 20 s.d 65 m and density 2,67 gr cc. This rock is interpreted as the response from Jatiluhur shale. Heat source layer is located underneath reservoir rock layer with resistivity value 100 m. Top of Reservoir TOR is estimated in depth of 800 m from the surface and identified at elevation 0 meter. The prospect area is about 0.5 km2 which located below ldquo I rdquo Mountain.
"
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2017
T47844
UI - Tesis Membership  Universitas Indonesia Library
cover
Haryo Gusmedi Sudarmo
"Telah dilakukan penelitian guna mendelineasi sistem panas bumi lapangan geothermal ldquo;H rdquo;. Penelitian ini menggunakan metode remote sensing untuk memetakan struktur dan alterasi di permukaan. Analisis geokimia digunakan untuk mengetahui karakteristik sistem panas bumi dan analisis geofisika digunakan untuk memetakan kondisi sistem panas bumi di bawah permukaan. Berdasarkan analisis remote sensing dengan teknik band combination secara pengamatan manual menunjukkan bahwa arah utama dari kelurusan - kelurusan yang berkembang di daerah penelitian ldquo;H rdquo; adalah Barat Laut - Tenggara dan Barat Daya - Timur Laut sesuai dengan Peta Geologi Regional yang berkorelasi dengan kemunculan beberapa manifestasi. Analisis remote sensing juga menemukan 1 lokasi yang diduga merupakan alterasi di permukaan. Analisis data geokimia dilakukan terhadap 12 manifestasi menunjukkan bahwa mata air panas SL-1, SL-2, SLM-1, SLM-2, HTS-1, HTS-2, HTS-3, TBK, TLH-1, TLH -2, TLH-3 dan TLH- 4 merupakan manifestasi tipe outflow.
Berdasarkan diagram segitiga ternary Na - K - Mg, diagram Na-K/Mg-Ca, diagram Enthalpy - Chloride Mixing Model, geothermometer Na/K menunjukkan temperatur reservoar adalah sekitar 210 C - 240 C dan dapat dikategorikan ke dalam sistem geothermal moderate to high temperature. Analisis Inversi 3-D Data MT menggunakan 66 data titik ukur. Berdasarkan inversi 3-D Data MT diketahui bahwa lapisan clay cap dengan nilai resistivitas rendah le; 10 ?m tersebar di Selatan dengan ketebalan 500 meter hingga 1000 meter. Lapisan reservoar terletak di bawah clay cap dengan nilai resistivitas >10 - 65 ?m. Base of Conductor BOC diperkirakan berada pada kedalaman 700 meter dengan updome berada di antara Sesar Wairutung dan Sesar Banda. Berdasarkan peta BOC diperoleh luas area prospek geothermal sekitar 16.5 km2.

The study of ldquo H rdquo geothermal field has been conducted to delineate their geothermal system. This study uses remote sensing method for mapping structure and alteration on the surface. Geochemical analysis is used to determine the characteristics of geothermal system and geophysical analysis is used to interpret the condition of geothermal system of sub surface. Based on remote sensing analysis using band combination technique with manual observation indicates that the main direction of the developed lineaments in the research area H is Northwest Southeast and Southwest Northeast in accordance with Regional Geological Map correlated with the appearance of several manifestations. The remote sensing analysis also found 1 suspected alteration site on the surface. Analysis of geochemical data was performed on 12 manifestations shows that hot springs SL 1, SL 2, SLM 1, SLM 2, HTS 1, HTS 2, HTS 3, TBK, TLH 1, TLH 2, TLH 3 and TLH 4 are outflow manifestations type.
Based on the diagram of the ternary triangle Na K Mg, Na K Mg Ca diagram, Enthalpy Chloride Mixing Model diagram, Na K geothermometer estimates the reservoir temperature is about 210 C 240 C and can be categorized into the moderate to high temperature geothermal system. Analysis of inversion 3 D MT data using 66 data points measurement. Based on 3 D inversion MT data is known that clay cap layer with low resistivity value le 10 m spread in South with thickness 500 meter to 1000 meter. The reservoir layer is located under clay cap with resistivity value 10 m 65 m. Base of Conductor BOC is estimated to be at depth of 700 meters with an updome located around Wairutung Fault Banda Fault. Based on BOC, the prospectable area of geothermal system is about 16.5 km2.
"
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2017
T48035
UI - Tesis Membership  Universitas Indonesia Library
cover
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.
"
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2017
T47440
UI - Tesis Membership  Universitas Indonesia Library
cover
Puji Suharmanto
"[ABSTRAK
Telah diakukan penelitian guna mendelineasi zona prospek sistem panasbumi Daerah „P‟ menggunakan pemodelan multi dimensi data magnetotelurik terintegrasi data geologi dan geokimia. Daerah panasbumi „P‟ secara fisiografi termasuk pada Busur Banda Dalam tak bergunungapi disusun oleh komplek batuan malihan sekis berumur Perm-Trias. Gejala adanya sistem panasbumi pada daerah penelitian ditandai dengan kemunculan manifestasi permukaan berupa enam mata air panas bersuhu (37-67oC), pH (6-7) dan bertipe klorida-bikarbonat. Pembentukan sistem panasbumi diduga berkaitan dengan aktivitas tektonik kuat akibat tumbukan lempeng Pulau Seram dengan Lempeng Benua Australia (Plate Collision) yang memicu pembentukan batuan intrusi di kedalaman sebagai sumber panas. Guna mengetahui informasi subsurface daerah penelitian, dilakukan survei magnetotelurik. Selanjutnya hasil dari data MT akan diintegrasikan data geologi dan geokimia. Pengolahan data MT dimulai dari time-series data hingga mendapatkan kurva resistivitas-frekuensi dan fase, lalu dilakukan filtering noise, rotasi arah strike dan koreksi static shift untuk mendapatkan kualitas kurva MT baik. Selanjutnya dilakukan pemodelan inversi 1D, 2D dan 3D. Temperatur reservoir diduga sekitar 160-180oC termasuk temperatur sedang. Hasil penelitian ini memperlihatkan lapisan konduktif (<15 Ωm) dengan ketebalan ± 500-1000 m diindikasikan sebagai Clay Cap dari sistem panasbumi. Zona resistivitas tinggi (>300 Ωm) dan berbentuk updome, berada di bawah area kemunculan manifestasi (MAP1, MAP2, MAP3, MAP4, dan MAP5) mengindikasikan heat source berada di utara kemudian menerus ke arah tenggara membentuk updome. Model konseptual terpadu sistem panasbumi dibentuk dari integrasi data geologi, geokimia, dan geofisika. Sistem panasbumi daerah penelitian merupakan hidrotermal heat sweep plate collision dengan temperatur sedang, luas area prospek dan rekomendasi titik pemboran diperkirakan ± 3 km2 di sekitar zona Upflow, potensi sumber daya hipotetik dengan metode volume lump parameter menggunakan binary cycle ± 34 MWe.

ABSTRACT
A study for delineating geothermal system of prospect area “P” has been done by using multi-dimensional modeling of magnetotelluric data. Physiographycally, geothermal prospect of “P” area is located at non-volcanic Banda inner arc hosted by Malihan Sekis rock complex with Perm-Trias age. The existance of geothermal system in this area is indicated by the presence of thermal manifestations in form of 6 chloride-bicarbonate hot springs with temperature in the the range of 37 – 67oC, and pH of 6-7. The development of geothermal system is most probably associated with strong tectonic activity caused by the collision between Seram island plate and Australian plate that ignite the occurence of intrussive body as heat source. In order to know the subsurface information of prospect area, magnetotelluric (MT) survey has been done. The processing of MT data was started from time-series data, continued by noise filtering, rotation of strike orientation and static shift correction to obtain better MT curve. The data were then being inversed by means of 1-Dimensional, 2-Dimensional and 3-Dimensional inversion methods. Reservoir temperature is estimated to be around 160-180 oC and classified as moderate temperature. The result of MT data inversions shows the presence of conductive layer (<15 Ωm) with 500 – 1000 m thickness that is interpreted as clay cap og geothermal system. High resistivity zone (>300 Ωm) with updome shape appears underneath the manifestations occurence (MAP1, MAP2, MAP4, and MAP5), indicating that the heat source is located in northern part and elongate to souteast direction. The conceptual model of geothermal system was built based on integrated interpretation of geological, geochemical and geophysical data. The prospect area and recommendation of drilling location is estimated to be ± 5 km2 around upflow zone. Potential hypothetical resource with volume lump parameters method using binary cycle ± 34 MWe., A study for delineating geothermal system of prospect area “P” has been done by using multi-dimensional modeling of magnetotelluric data. Physiographycally, geothermal prospect of “P” area is located at non-volcanic Banda inner arc hosted by Malihan Sekis rock complex with Perm-Trias age. The existance of geothermal system in this area is indicated by the presence of thermal manifestations in form of 6 chloride-bicarbonate hot springs with temperature in the the range of 37 – 67oC, and pH of 6-7. The development of geothermal system is most probably associated with strong tectonic activity caused by the collision between Seram island plate and Australian plate that ignite the occurence of intrussive body as heat source. In order to know the subsurface information of prospect area, magnetotelluric (MT) survey has been done. The processing of MT data was started from time-series data, continued by noise filtering, rotation of strike orientation and static shift correction to obtain better MT curve. The data were then being inversed by means of 1-Dimensional, 2-Dimensional and 3-Dimensional inversion methods. Reservoir temperature is estimated to be around 160-180 oC and classified as moderate temperature. The result of MT data inversions shows the presence of conductive layer (<15 Ωm) with 500 – 1000 m thickness that is interpreted as clay cap og geothermal system. High resistivity zone (>300 Ωm) with updome shape appears underneath the manifestations occurence (MAP1, MAP2, MAP4, and MAP5), indicating that the heat source is located in northern part and elongate to souteast direction. The conceptual model of geothermal system was built based on integrated interpretation of geological, geochemical and geophysical data. The prospect area and recommendation of drilling location is estimated to be ± 5 km2 around upflow zone. Potential hypothetical resource with volume lump parameters method using binary cycle ± 34 MWe.]"
2015
T43733
UI - Tesis Membership  Universitas Indonesia Library
cover
Fadhila Friany Putri
"Pada era modern saat ini diperlukan inovasi teknologi untuk melakukan survei geotermal yang efisien namun tetap akurat. Salah satu metode yang tengah dikembangkan adalah menggunakan remote sensing. Dalam penelitian ini, aplikasi metode remote sensing yaitu Fault and Fracture Density (FFD) digunakan untuk mendeteksi zona permeabel dengan cara menilai area yang memiliki kepadatan struktur tinggi berdasarkan kelurusan yang terbentuk oleh aktivitas patahan dan rekahan. Namun, kenyataannya tidak semua kelurusan berasal dari aktivitas patahan, sehingga perlu dilakukan pemrosesan sinyal digital untuk menyeleksinya. Penelitian dilakukan menggunakan citra Landsat 8 yang diproses melalui dimension reduction metode Principal Component Analysis dan proses filtering berupa filter konvolusi directional dan Laplacian untuk meningkatkan kualitas citra. Kelurusan dari citra Landsat 8 diekstrak secara otomatis menggunakan algoritma Edge Detection, lalu dikomparasikan dengan kelurusan dari citra IFSAR yang diekstrak secara manual. Hasilnya dalam bentuk peta FFD, daerah dengan kepadatan kelurusan tertinggi berada di sisi tenggara dan di sekitar kawah G.K. Untuk membuktikan keefektifan metode ini, digunakan pula data gravitasi yang dapat mengonfirmasi keberadaan struktur patahan secara geofisika. Hasil integrasi kedua data tersebut disertai data penunjang lainnya menunjukkan zona permeabel untuk lokasi pengeboran yang paling efektif berada di dekat manifestasi APKK dan APSE.

In this modern era, technology is needed to conduct geothermal surveys that are efficient but still accurate. One method that is being developed to survey geothermal potential is remote sensing. In this study, the application of remote sensing methods namely Fault and Fracture Density (FFD) is used to evaluate permeable zones by evaluating areas that have high faults and joints structures. However, not all of lineament presence caused by fault activities, so digital signals processing need to be carried out. This research used Landsat 8 imagery which is done through dimension reduction using Principal Component Analysis and the filtering process such as Sobel, Line Detection, Prewitt, and Laplacian convolution filters to improve image quality. Lineament extraction from Landsat 8 images is performed automatically using Edge Detection while lineament from IFSAR image extracted manually. The extracted lineaments then compared in the form of FFD maps. To prove the effectiveness of this method, gravity data are also used to confirm the fault presence geophyisically. The results of these data which integrated with other supporting data showed the suitability of covering permeable zones which can be most effective drill point areas are near the manifestations of APKK and APSE."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2020
S-pdf
UI - Skripsi Membership  Universitas Indonesia Library
cover
Syafrima Wahyu
"Telah dilakukan penelitian guna delineasi zona prospek sistem panasbumi daerah ldquo;Z rdquo; menggunakan permodelan tiga Dimensi magnrtotellurik didukung data terpadu berupa geologi dan geokimia serta terintegrasi data gravitasi. Daerah panasbumi ldquo;Z rdquo; dalam tatanan tektoniknya termasuk pada jalur backarc Sumatera, tepat pada salah satu segmen sesar Sumatera bagian selatan, disusun oleh batuan vulkanik dan sedimen klastik yang berumur Tersier hingga Kuarter Andesit-Basalt . Gejala adanya sistem panasbumi pada daerah penelitian ditandai dengan kemunculan manifestasi permukaan berupa alterasi dan lima mata air panas bersuhu 44,4 - 92,5 oC, pH 8,19 - 9,43 dan bertipe bikarbonat, sulfat-bikarbonat, serta sulfat-klorida. Pembentukan sistem panasbumi dipengaruhi oleh aktivitas tektonik menyerong oblique antara lempeng Samudera India dan Lempeng Kontinen Eurasia searah dengan pola sesar Sumatera.
Berdasarkan analisis air panasbumi temperatur reservoir diambil melalui perhitungan geothermomether SiO2 Fournier 1977 , Na-K Giggenbach 1988 , Na-K-Ca, diagram Na-K-Mg serta diagram Enthalphy - Cloride Mixing Model berkisar 145 - 155oC, termasuk dalam sistem panas bumi bertemperatur sedang. Berdasarkan inversi tiga dimensi data MT didapatkan kedalaman Top of Reservoar TOR sistem panasbumi daerah ldquo;Z rdquo; sekitar 400 m elevasi 50 mdpl sedangkan berdasarkan forward modeling data gravitasi lintasan 2 dimensi diperkirakan sumber panas berupa cooling instrusion diperkirakan batuan gabro ; resistivitas ge; 450 ?m ; densitas 2,95 - 3,15 gr/cc dan reservoar berupa batupasir resistivitas 50 - 250 ?m ; densitas 2,60 gr/cc . Sistem panasbumi daerah penelitian termasuk jenis tektonik fracture zone dengan temperatur sedang dengan luas daerah prospek sekitar 7,5 km2.

A study for delineating geothermal system of prospect area ldquo Z rdquo has been done by using tree dimension modeling of magnetotelluric supported unified data just like geological and goechemical and integrated gravity data. Geothermal area ldquo Z rdquo in tectonic setting included in Sumatra volcanic backarc, right on one of the southern part of Sumatra fault segment. Compodes by volcanic and clastic sendimentary rock are Tertiary to Quarternary Andesite Basalt. The existance of goethermal system in this area is indicated by the presence of thermal manifestation in form of alteration and five hot springs temperature in the ranges 44.4 ndash 92.5 oC, and pH 8.19 ndash 9.43 and type of fluida are bicarbonate, sulphate bicarbonate, and sulfate chloride. The development of geothermal system is affected by tectonic oblique between the Indian Ocean plate and the Eurasian Contenent Plate direction of the Sumatra fault patterns.
Based on the analysis of geothermal water reservoir temperature are taken through the calculation geothermometer SiO2 Fournier 1977, Na K Giggenbach 1988 , Na K Ca, Na K Mg diagram and Enthalpi Mixing Cloride Model range 145 ndash 155 oC, classified as intermediate temperature. Base on a three dimensional inversion of the magnetotelluric data obtained depth Top of Reservoir TOR geothermal system area ldquo Z rdquo about 400 m elevation 50 meters above sea leavel , while based on the two dimensional of the gravity data predicted heat sources such as cooling instrusion estimated gabbro density 2,95 ndash 3,15 gr cc and reservoar such as sandstone resistivity 50 ndash 250 m density 2,60 gr cc . The Geothermal systems of research area classified as the type of intermediate temperature tectonic fracture zone with prospect area about 7,5 km2.
"
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2017
T46881
UI - Tesis Membership  Universitas Indonesia Library
cover
Ritonga, Ahmad Fitra
"ABSTRAK
Penelitian di daerah prospek geothermal ldquo;X rdquo; bertujuan untuk mendelineasi zona permeable berdasarkan data audio magnetotellurik dan gravitasi yang dipadu dengan data geologi dan geokimia. Analisis data geologi dengan teknik remote sensing diidentifikasi dua struktur utama yang mengarah dari Utara - Selatan dan Barat Laut ndash; Tenggara dan terdapat satu lokasi alterasi yang berkorelasi dengan kemunculan manifestasi permukaan. Analisis data geokimia menunjukkan bahwa manifestasi fumarol merupakan manifestasi tipe upflow dan manifestasi air panas AP X1 dan AP X2 merupakan tipe manifestasi outflow. Geotermometer gas menunjukan temperatur reservoar adalah sekitar 290 C. Analisis data geofisika menggunakan 35 data titik ukur audio magnetotellurik dan 194 titik ukur gravitasi. Berdasarkan inversi 3D data AMT dan forward modelling gravitasi terdapat lapisan penudung cap rock dengan nilai resistiviatas rendah le; 10 ?m dan densitas 2.1 gr/cc yang diduga merupakan batuan produk Gunung BA Muda yang mengalami alterasi. Batuan cap rock sudah terlihat mulai dari permukaan dan menebal ke arah manifestasi AP X1 dengan kedalaman sekitar 500 meter dengan ketebalan 500 meter hingga 1000 meter Di bawah batuan cap rock terdapat batuan reservoar dengan nilai resistivitas sedang >10 s.d 65 ?m dan densitas 2,6 gr/cc. Batuan ini diinterpretasikan sebagai respon dari batuan Lava BU. Lapisan heat source berada di bawah reservoar dengan nilai resistivitas >100 ?m yang diduga merupakan satuan batuan aktivitas vulkanik Gunung BA. Top of Reservoir TOR diperkirakan berada pada kedalaman 500 m dari permukaan yang teridentifikasi pada elevasi 0 meter. Analisis kurva splitting diperoleh bahwa zona permeable kemungkinan berada di sebelah Timur Gunung BA dikarenakan area tersebut cenderung naik dibandingkan dengan area sekitarnya. Analisis kurva splitting ini memberi penguatan terhadap interpretasi struktur terpadu interpretasi struktur berdasarkan Geologi, FHD, peta resistivitas 3D AMT per elevasi . Luas zona prospek sebesar 1.5 km2 yang berada disebelah Timur Gunung BA.

ABSTRACT
The research in ldquo X rdquo geothermal prospect area aimed to delineate permeable zone based on audio magnetotelluric and gravity data integrated with geology and geochemistry data. Geological analysis with remote sensing technique identified two main structures that lead from North ndash South and Northwest ndash Southeast and found one altered location which correlate with the appearance of surface manifestation. Geochemical analysis shows that fumarole is the upflow zone and manifestations which appear in AP X1 and AP X2 are the outflow zone. Gas geothermometer shows that the reservoir temperature is about 290 C. The analysis of geophysics data used 35 audio magnetotelluric points and 194 gravity points. Based on 3D AMT data inversion and gravity forward modelling, there is cap rock layer with low resistivity le 10 m and density 2.1 gr cc expected as product rocks of young AB Mountain that altered. Cap rock finds in the surface and thickened toward AP X1 manifestation with depth about 500 meters with thickness 500 meters up to 1000 meters. Under cap rock layer, there is reservoir rock layer with medium resistivity 10 s.d 65 m and density 2,6 gr cc. This rock is interpreted as the response from Lava BU rocks. Heat source layer is located underneath reservoir rock layer with resistivity value 100 m which is interpreted as BA vulcanic rock. Top of Reservoir TOR is estimated in depth of 500 m from the surface and identified at elevation 0 meter. Analysis of curve splitting is obtained that permeable zone possibly located at East BA Mountain because the area were tending to increase compared with the surrounding area. Analysis of curve splitting strengthen integrated interpretation structure interpretation structure based on Geology, FHD, Map of 3D AMT resistivity per elevation . The prospect area is about 1.5 km2 which located in East BA Mountain."
2017
T47436
UI - Tesis Membership  Universitas Indonesia Library
cover
Laily Nur Fitriyani
"Daerah prospek Geotermal Gunung ST merupakan tipe gunungapi strato yang berada pada lingkungan vulkanik kuarter dan memiliki manifestasi berupa fumarol dan mata air panas sebagai indikasi sistem geotermal. Pengolahan data MT dilakukan untuk mengetahui distribusi resistivitas batuan di bawah permukaan dalam menentukan komponen sistem geotermal. Proses akhir dari pengolahan data adalah dilakukan pemodelan MT inversi 3D. Daerah interest untuk pembuatan model konseptual berada pada lintasan 1. Berdasarkan analisis integrasi dengan berbagai data diidentifikasi bahwa zona konduktif menipis di wilayah upflow yaitu di puncak Gunung ST dan menebal menuju outflow yaitu di bagian relatif utara dan selatan dari Gunung ST. Struktur geologi yang mengontrol sistem geotermal di Gunung ST adalah sesar St berarah barat daya – timur laut yang letaknya memotong daerah prospek. Karakteristik sistem geotermal daerah penelitian dapat teridentifikasi, yang meliputi: clay cap sebagai lapisan penudung terletak pada kedalaman 400 m dengan ketebalan bervariasi mencapai 3000 m, reservoir di kedalaman 1000 m dengan ketebalan 1000 – 1600 m, dan heat source pada kedalaman lebih dari 4000 m dari permukaan tanah.

The geothermal prospect area of Mount ST is a stratovolcanic type located in a quarter volcanic environment and has manifestations in the form of fumaroles and hot springs as an indication of the geothermal system. MT data processing is carried out to determine the distribution of rock resistivity below the surface in determining the components of the geothermal system. The final process of data processing is 3D inversion MT modelling. The area of interest for conceptual modelling is on track 1. Based on the integration analysis with various data, it is identified that the conductive zone is thinning in the upflow area, namely at the top of Mount ST and thickens towards outflow, namely in the relatively north and south of Mount ST. The geological structure that controls the geothermal system on Mount ST is the southwest-northeast trending St fault which intersects the prospect area. The characteristics of the geothermal system in the study area can be identified, which include: clay cap as a covering layer located at a depth of 400 m with a thickness varying up to 3000 m, a reservoir at a depth of 1000 m with a thickness of 1000 – 1600 m, and a heat source at a depth of more than 4000 m from ground level."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2022
S-pdf
UI - Skripsi Membership  Universitas Indonesia Library
cover
Iskandar
"Lapangan geotermal X berada di area gunung A yangmana berdasarkan data geologi ditemukan adanya manifestasi berupa hot spring dan fumarole. Pengukuran MT dilakukan untuk mengetahui persebaran resistivity batuan di bawah permukaan. Pengolahan data MT dilakukan dari analisis time series dan filtering noise kemudian dilakukan Transformasi Fourier dan Robust Processing. Setelah itu baru dilakukan crosspower untuk menyeleksi data sehingga output dari proses ini berupa kurva MT. Setelah didapatkan kurva MT dilakukan koreksi statik dikarenakan kurva TE dan TM terjadi shifting. Untuk proses akhirnya baru dilakukan inversi 2D dan inversi 3D. setelah itu dilakukan perbandingan antara 2D dan 3D. Wilayah interest lapangan X berada di lintasan AA dan lintasan AB. Berdasarkan analisis 3D diidentifikasi bahwa zona alterasi menipis di wilayah upflow dan menebal ke arah outflow yangmana sesuai dengan teori. Wilayah upflow dapat diketahui dengan melihat manifestasi berupa fumarole.

The geothermal field X is located in the area of Mount A which based on geological data found the presence of hot spring and fumarole manifestations. MT measurements were carried out to determine the distribution of rock resistivity in the subsurface. MT data processing is starts from time series analysis and noise filtering then Fourier Transform and Robust Processing are performed. After that, crosspower is done to select data so that the output of this process is an MT curve. After got the MT curve then a static correction is done because the TE and TM curves are shifting. For the final process are 2D inversion and 3D inversion. After that make a comparison between 2D and 3D. The area of interest in field X is on the line AA and line AB. Based on the 3D analysis, it was identified that alteration zones thinned in the upflow region and thickened towards the outflow which is make sense with the theory."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2019
S-Pdf
UI - Skripsi Membership  Universitas Indonesia Library
<<   1 2 3 4 5 6 7 8 9 10   >>