Identification of sliding fields using the geoelectric resistivity method as an effort to mitigate landslides (case study: Payan, Punten Village, Batu City)

Dessy Lutfiani Pratiwie, Adi Susilo, Ahmad Byan Kamali, Indah Gumilang Dwinanda

Abstract


A sliding plane is a layer below the surface that is impermeable. The sliding plane becomes a place where the soil mass experiences movement so that the weathered layer above it experiences landslides following the slope. Payan Hamlet, located in Punten Village, Batu City, which is the research area, is included in a landslide-prone village as evidenced by the recapitulation of BPBD disaster data for Batu City during 2022, 6 landslides occurred. The geoelectric method used in this study is the Wenner configuration. It was used to identify the subsurface condition and interpret the slide plane and direction of the landslide. There are 5 trajectories in this study with 5 m electrode spacing. Based on the results of 2D data processing, the distribution of resistivity values in the research area is diverse. The resistivity value is divided into 3 (three) categories. The low resistivity category with a value of 13 - 51 Ωm is interpreted as a clay layer, the medium resistivity category with a value of 70 - 100 Ωm is interpreted as a tuff layer, and the high resistivity category with a value of 100 - 200 Ωm is interpreted as volcanic breccia. The interpretation of the layer that becomes the sliding field in the research area is the tuff layer with a depth of ± 3.8 - 4m. Based on the results of 2D data processing and calculation of the degree of slope, it can be analysed that the direction of the landslide leads to the southeast side of the research area. Installation of evacuation route signs around the research area is considered as a disaster mitigation effort that can be done

Keywords


Geoelectric, landslide, slide field, slope.

Full Text:

PDF

References


Badan Nasional Penanggulangan Bencana. (2020). Bencana Alam di Indonesia Tahun 2010 s/d 2020.

Badan Nasional Penanggulangan Bencana. (2023). Infografis Update Bencana.

Badan Standarisasi Nasional. (2005). Penyusunan Peta Zona Kerentanan Gerakan Tanah . Badan Standarisasi Nasional.

Balai Besar Litbang Sumberdaya Lahan Pertanian (BBSDLP). (2013). Badan Penanggulangan Bencana Daerah.

BPBD Kota Batu. (2022). Rekapitulasi Data Bencana Tahun 2022.

Eka Putri, S., Corp, A. F., Rembrandt, Dasman Lanin, Genius Umar, & Mulya Gusman. (2023). Kota Padang : Identifikasi Potensi Bencana Banjir Dan Upaya Mitigasi. Jurnal Ilmiah Multidisiplin Nusantara (JIMNU), 1(3), 116–122. https://doi.org/10.59435/jimnu.v1i3.56

Fazri, M., Risdawati AP, A., Imron, D. K., Roidatua, M. R., Oktarina, A., Nababan, F. E., & Pertiwi, C. (2022). Risk Identification and Disaster Management at The Village Level: Principal Component Analysis Approach. In Proceedings of the 7th International Conference on Social and Political Sciences (ICoSaPS 2022) (pp. 275–282). Atlantis Press SARL. https://doi.org/10.2991/978-2-494069-77-0_38

Irjan. (2012). PEMETAAN POTENSI AIR-TANAH (AQUIFER) BERDASARKAN INTERPRETASI DATA RESISTIVITAS WENNER SOUNDING (Studi kasus: Pengembangan kampus II Universitas Islam Negeri Maulana Malik. Jurnal Neutrino, 4(2), 201–212. https://doi.org/https://doi.org/10.18860/neu.v0i0.1931

Jalaludin, S. (2023). Disaster Mitigation Management By The Regional Disaster Management Agency (BPBD) In Management of Drought Disaster In West Lombok District. Journal Pendidikan Islam, 12(02). https://doi.org/10.30868/ei.v2i02.4028

Junaidy, A., Sandhyavitri, A., Yusa, M., & Sipil, J. T. (2019). PENGGALI AIR INSITU DAN PERAN SERTA MASYARAKAT DI DESA RIMBO PANJANG, KABUPATEN KAMPAR, PROVINSI RIAU. Jurnal BAPPEDA . https://doi.org/10.47521/selodangmayang.v5iNomor%202.122

Leluno, Y., Kembarawati, & Basuki. (2020). Kualitas Air Tanah di Sekitar TPA Km 14 Kota Palangka Raya. Journal of Environment and Management, 75–82. https://doi.org/https://dx.doi.org/10.37304/jem.v1i1.1208

Luthfin, A. (2023). RESEARCH-BASED DISASTER MITIGATION EDUCATION BASED ON THE NUSA TENGGARA CASE STUDY. In Society and Humanity (Vol. 01, Issue 01).

Maryati, S. (2018). Identification of Flood Prone Areas for Natural Disaster Mitigation using Geospatial Approach (A Case Study in Bone Bolango Regency, Gorontalo Province). IOP Conference Series: Earth and Environmental Science, 145(1). https://doi.org/10.1088/1755-1315/145/1/012080

Naryanto, H. S. (2011). Analisis Risiko Bencana Tanah Longsor di Kabupaten Karanganyar. Jurnal Penanggulangan Bencana, 2(1), 21–32.

Nia, H., & Mahdavi, S. A. (2020). PRINCIPLES OF GEOELECTRICAL METHODS. Physio-Géo, 8–57. https://www.researchgate.net/publication/346969879

Nugraheni, I. L., Suyatna, A., Setiawan, A., & Abdurrahman. (2022). Flood disaster mitigation modeling through participation community based on the land conversion and disaster resilience. Heliyon, 8(8). https://doi.org/10.1016/j.heliyon.2022.e09889

Pratiwi, D., Putri, D., Syamsul Arif, R., Kartika, J. A., Riski Fathurohman, C., & Apriyanti, D. (2022a). IDENTIFICATION AND ANALYSIS OF LANDSLIDE SOIL VULNERABILITY AS THE BASIS OF DISASTER MITIGATION WITH GEODETIC MEASUREMENT METHODS AND QUANTITATIVE DESCRIPTION. BULLETIN OF GEOLOGY, 6(2), 960–967. https://doi.org/10.5614/bull.geol.2022.6.2.4

Pratiwi, D., Putri, D., Syamsul Arif, R., Kartika, J. A., Riski Fathurohman, C., & Apriyanti, D. (2022b). IDENTIFICATION AND ANALYSIS OF LANDSLIDE SOIL VULNERABILITY AS THE BASIS OF DISASTER MITIGATION WITH GEODETIC MEASUREMENT METHODS AND QUANTITATIVE DESCRIPTION. BULLETIN OF GEOLOGY, 6(2), 960–967. https://doi.org/10.5614/bull.geol.2022.6.2.4

Rahma, A., & Zulfian, D. (2020). Identifikasi Ketebalan Lapisan Tanah Gambut Menggunakan Metode Geolistrik Tahanan Jenis 3D (Studi Kasus : Daerah Parit Haji Husin II Kecamatan Pontianak Tenggara Kota Pontianak). PRISMA FISIKA, 8(3), 221–228.

Reynolds, J. M. (1997). An Introduction to Applied and Environmental Geophysics. John Wiley & Sons Ltd.

Rosyida, A., Nurmasari, R., & Suprapto. (2019). ANALISIS PERBANDINGAN DAMPAK KEJADIAN BENCANA HIDROMETEOROLOGI DAN GEOLOGI DI INDONESIA DILIHAT DARI JUMLAH KORBAN DAN KERUSAKAN (STUDI: DATA KEJADIAN BENCANA INDONESIA 2018). In Jurnal Dialog Penanggulangan Bencana (Vol. 10, Issue 1). https://perpustakaan.bnpb.go.id/jurnal/index.php/JDPB/article/view/127/97

Sirait, F., & Ihwan, A. (2015). IDENTIFIKASI STRUKTUR LAPISAN TANAH GAMBUT SEBAGAI INFORMASI AWAL RANCANG BANGUNAN DENGAN METODE GEOLISTRIK 3D. PRISMA FISIKA, III(2), 36–40. https://doi.org/https://dx.doi.org/10.26418/pf.v3i2.11170

Susilo, A., Rachmansyah, A., Santoso, D. R., & Purnomo. (2009). LAPORAN HIBAH PENELITIAN SESUAI PRIORITAS NASIONAL Bidang: Mitigasi dan Manajemen Bencana Ketua Tim Peneliti.

Susilo, A., Sunaryo, Fitriah, F., & Sarjiyana. (2018). Fault analysis in Pohgajih Village, Blitar, Indonesia using resistivity method for hazard risk reduction. International Journal of GEOMATE, 14(41), 111–118. https://doi.org/10.21660/2018.41.87552

Susilo, A., Sunaryo, Isdarmadi, K., & Rusli. (2017). Investigation of Jabung Temple subsurface at Probolinggo, Indonesia using resistivity and geomagnetic methods. International Journal of GEOMATE, 13(40), 74–80. https://doi.org/10.21660/2017.40.39246

Susilo, A., Sunaryo, S., Fathur, M., & Hasan, R. (2017). Identification of underground river flow in Karst Area using geoelectric and self-potential methods in Druju Region Southern Malang, Indonesia. Indonesia Article in International Journal of Applied Engineering Research, 12(21), 10731–10738. http://www.ripublication.com

Sutasoma, M., Susilo, A., & Suryo, E. A. (2017). Penyelidikan Zona Longsor dengan Metode Resistivitas dan Analisis Stabilitas Lereng untuk Mitigasi Bencana Tanah Longsor (Studi Kasus di Dusun Jawar, Desa Sri Mulyo, Kecamatan Dampit, Kabupaten Malang, Provinsi Jawa Timur). Indonesian Journal of Applied Physics, 7(1), 36–45.

Suyanto, I. (2013). Analisis Data Resistivitas Dipole-dipole untuk Indentifikasi dan Perhitungan Sumber Daya Asbuton Di Daerah Kabungka, Pasarwajo, Pulau Buton, Sulawesi Tenggara. Jurnal Fisika Indonesia, XVII(50).

Syukri, M. (2020). Dasar-Dasar Metode Geolistrik. Syiah Kuala University Press.




DOI: http://dx.doi.org/10.30870/gravity.v10i2.24135

Refbacks

  • There are currently no refbacks.


Gravity has been indexed by:

     
     

 

  

 

Gravity : Jurnal Ilmiah Penelitian dan Pembelajaran Fisika is publihed by Department of Physics Education, Universitas Sultan Ageng Tirtayasa jointly with Physical Society of Indonesia (PSI)

Creative Commons License 

Gravity : Jurnal Ilmiah Penelitian dan Pembelajaran Fisika is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License

Copyright © 2020, Gravity: Jurnal Ilmiah Penelitian dan Pembelajaran Fisika.