Identification Lithology of Geothermal Potential Areas Using the Electrical Resistivity Tomography (ERT) Method

Authors

  • Hana Raihana University of Bengkulu
  • Suhendra Suhendra University of Bengkulu
  • Khairun Nazli Syiah Kuala University
  • Halauddin Halauddin University of Bengkulu
  • Refrizon Refrizon University of Bengkulu

DOI:

https://doi.org/10.20956/geocelebes.v8i2.25377

Keywords:

ERT, Hydrothermal, Lebong Regency, Lithology, Wenner

Abstract

The rock lithology of the potential hydrothermal area has been studied using Electrical Resistivity Tomography (ERT) in Pungguk Pedaro Village, Bingin Kuning District, Lebong Regency. Field data acquisition uses a stretch length of 480 meter with the MAE X612-EM Geoelectric tool that forms a straight line. ERT method, using Res2dinvx64 software. The study aims to determine the subsurface conditions of the potential hydrothermal area and the characteristics of the rocks that make up the hydrothermal area. The results of this study can be concluded that Pungguk Pedaro Village is dominated by clay, sandstone, sandy gravel, andesite, basalt, and granite rocks. In this study, measurements were taken with six lines to see variations in resistivity values as a reference for identifying potential geothermal lithologies. There is 1 line that cuts to five lines to validate the resistivity value of each line. Line 1 has no potential for hydrothermal distribution because there has been a mixture of hydrothermal water with mountain water, so this line will only provide groundwater.

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References

Abdillah, F., & Malik, U. (2021). Pemetaan Sebaran Mata Air Panas Di Daerah Objek Wisata Desa Pawan Menggunakan Metode Geolistrik Tahanan Jenis Konfigurasi Wenner. Komunikasi Fisika Indonesia, 18(1), 35–41. http://dx.doi.org/10.31258/jkfi.18.1.35-41

Adli, M. (2021). Simulasi Numerik Aliran Fluida Hidrotermal Dan Perpindahan Energi Panas Dengan Hydrotherm Interactive Pada Daerah Padang Cermin, Lampung. Universitas Lampung.

Afandi, A., Maryanto, S., & Rachmansyah, A. (2013). Identifikasi Reservoar Daerah Panasbumi Dengan Metode Geomagnetik Daerah Blawan Kecamatan Sempol Kabupaten Bondowoso. Jurnal Neutrino, 6(1), 11–10. https://doi.org/10.18860/neu.v0i0.2441

Amir, H., Akmam, A., Bavitra, B., & Azhari, M. (2017). Penentuan Kedalaman Batuan Dasar Menggunakan Metode Geolistrik Tahanan Jenis Dengan Membandingkan Konfigurasi Dipole-Dipole Dan Wenner Di Bukit Apit Puhun Kecamatan Guguk Panjang Kota Bukittinggi. EKSAKTA: Berkala Ilmiah Bidang MIPA, 18(01), 19–30. https://doi.org/10.24036/eksakta/vol18-iss01/13

Barrett, M. (2013). Renewable energy sources and the city. A Handbook of Sustainable Building Design and Engineering: An Integrated Approach to Energy, Health and Operational Performance.

Basid, A., Andrini, N., & Arfiyaningsih, S. (2014). Pendugaan Reservoir Sistem Panas Bumi dengan Menggunakan Survey Geolistrik, Resistivitas Dan Self Potensial (Studi Kasus: Daerah Manifestasi Panas Bumi di Desa Lombang, Kecamatan Batang-Batang, Sumenep). Jurnal Neutrino, 7(1), 57–60. https://doi.org/10.18860/neu.v7i1.2640

Chaidir, F. Y., Puspita, O. D., Rumahorbo, G., & Hamdalah, H. (2021). Analysis of Geomagnetic and Geoelectric Data to Identify the Potential of Gold Deposits (Case Study: Randu Kuning, Wonogiri, Central Java). IOP Conference Series: Earth and Environmental Science, 830(1), 012052. https://doi.org/10.1088/1755-1315/830/1/012052

Erwin. (2016). Pendugaan Reservoir Daerah Potensi Panas Bumi Pencong Dengan Menggunakan Metode Tahanan Jenis. Jurnal Sains dan Pendidikan Fisika, 12(3), 346–355. https://ojs.unm.ac.id/JSdPF/article/view/3063

Fathan, Q. (2013). Studi Potensi Panasbumi Daerah Hululais Kabupaten Lebong Provinsi Bengkulu, Sumatera. Geosains, 9(2), 125–134.

Gafoer, S., Amin, T. C., & Pardede, R. (2007). Peta geologi lembar Bengkulu, Sumatera. Bandung : Pusat Penelitian dan Pengembangan Geologi. https://geologi.esdm.go.id/geomap/pages/preview/peta-geologi-lembar-bengkulu-sumatera

Hidayat, H., Putra, A., & Pujiastuti, D. (2021). Identifikasi Sebaran Anomali Magnetik pada Daerah Prospek Panas Bumi Nagari Aie Angek, Kabupaten Tanah Datar. Jurnal Fisika Unand, 10(1), 48–54. https://doi.org/10.25077/jfu.10.1.48-54.2021

Suciningtyas, I. K. L. N., Maryanto, S., & Rachmansyah, A. (2013). Sebaran Mataair Panas Blawan-Ijen Berdasarkan Data Geolistrik Resistivitas. Natural B, 2(2), 164–171. http://dx.doi.org/10.21776/ub.natural-b.2013.002.02.11

Karaman, A. (2013). Preliminary geoelectrical identification of a low-temperature hydrothermal system in the Anzer glacial valley, İkizdere, Rize, Turkey. Turkish Journal of Earth Sciences, 22(4), 664–670. https://doi.org/10.3906/yer-1207-7

Nurwahyudin, D. S., & Harmoko, U. (2020). Pemanfaatan dan Arah Kebijakan Perencanaan Energi Panas Bumi di Indonesia Sebagai Keberlanjutan Maksimalisasi Energi Baru Terbarukan. Jurnal Energi Baru dan Terbarukan, 1(3), 111–123. https://doi.org/10.14710/jebt.2020.10032

Pitulima, J., & Siregar, R. N. (2016). Identifikasi Struktur Geologi Sumber Air Panas Non Volkanik Desa Nyelanding Bangka Selatan dengan menggunakan metode geolistrik konfigurasi Wenner. Prosiding Seminar Nasional Riset Terapan, D63–D70. https://e-prosiding.poliban.ac.id/index.php/snrt/article/download/64/111/

Pratama, W., & Rustadi, R. (2019). Aplikasi Metode Geolistrik Resistivitas Konfigurasi Wenner- Schlumberger Untuk Mengidentifikasi Litologi Batuan Bawah Permukaan Dan Fluida Panas Bumi Way Ratai Di Area Manifestasi Padok Di Kecamatan Padang Cermin Kabupaten Pesawaran Provinsi Lampung. Jurnal Geofisika Eksplorasi, 5(1), 30–44. https://doi.org/10.23960/jge.v5i1.21

Raihana, H., Sinaga, J. E. E., Cahyani, A. G., Halauddin., Suhendra., Hutauruk, A., & Sugianto, N. (2023). Identification of Alteration Zones Based on Resistivity and Induced Polarization Geoelectric Survey. Jambura Geoscience Review, 5(2), 119–126. https://doi.org/10.34312/jgeosrev.v5i2.17931

Railasha, V., Satibi, S., & Nugroho, S. A. (2015). Interpretasi Lapisan Bawah Permukaan Tanah Menggunakan Metode Geolistrik 2-D (Mapping). Jurnal Online Mahasiswa, 2(2), 1–7. https://jom.unri.ac.id/index.php/JOMFTEKNIK/article/view/7627/7299

Riputra, B. Y., & Malik, U. (2021). Survei Sumber Air Panas Dengan Metode Geolistrik Konfigurasi Wenner (Studi Kasus: Wisata Air Panas Pawan, Pasirpangaraian). Komunikasi Fisika Indonesia, 18(2), 146–150. http://dx.doi.org/10.31258/jkfi.18.2.146-150

Sapiie, B., Yulian, F., Chandra, J., Satyana, A. H., Dharmayanti, D., Rustam, A. H., & Deighton, I. (2015). Geology and Tectonic Evolution of Fore-Arc Basins: Implications of Future Hydrocarbon Potential in the Western Indonesia. Proceedings of Indonesia Petroleum Association, 39th Annual Convenion and Exhibition. https://archives.datapages.com/data/ipa_pdf/2015/ipa15-g-177.htm

Putriutami, E. S., Harmoko, U., & Widada, S. (2014). Interpretasi Lapisan Bawah Permukaan Di Area Panas Bumi Gunung Telomoyo, Kabupaten Semarang Menggunakan Metode Geolistrik Resistivity Konfigurasi Schlumberger. Youngster Physics Journal, 3(2), 97–106. https://ejournal3.undip.ac.id/index.php/bfd/article/view/5281/5086

Tarmidzi, F., & Setyawan, A. (2014). Study of fluid flow in gedongsongo temple manifestation geothermal based on the data of geophysics. Energy Procedia, 47, 101–107. https://doi.org/10.1016/j.egypro.2014.01.202

Vargemezis, G. (2014). 3D geoelectrical model of geothermal spring mechanism derived from VLF measurements: A case study from Aggistro (Northern Greece). Geothermics, 51, 1–8. https://doi.org/10.1016/j.geothermics.2013.09.001

Widiatmoko, F. R. (2019). Pendekatan Analisa Geokimia dengan Multivariate Analysis untuk Mengetahui Tipe Mata Air Panas: Studi Kasus Lapangan Panas Bumi Mapos, Nusa Tenggara Timur. Jurnal IPTEK, 23(2), 71–78. https://doi.org/10.31284/j.iptek.2019.v23i2.518

Yulihanto, B., Situmorang, B., Nurdjajadi, A., & Sein, B. (1995). Structural Analysis of the Onshore Bengkulu Forearc Basin and Its Implication for Future Hydrocarbon Exploration Activity. 24th Annual Convention Proceedings, 1, 85–96. https://archives.datapages.com/data/ipa/data/024/024001/85_ipa024a0085.htm

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Published

2024-10-01

How to Cite

Raihana, H., Suhendra, S., Nazli, K., Halauddin, H., & Refrizon, R. (2024). Identification Lithology of Geothermal Potential Areas Using the Electrical Resistivity Tomography (ERT) Method. JURNAL GEOCELEBES, 8(2), 123 -. https://doi.org/10.20956/geocelebes.v8i2.25377

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