Enhanced subsurface investigation utilizing electrical resistivity tomography and precise positioning tools (study case: Rongga landslide)

This study presents an enhanced approach for subsurface investigation using Electrical Resistivity Tomography (ERT) coupled with precise positioning tools, focusing on the Rongga Landslide in Indonesia. ERT is widely recognized for its ability to map subsurface conditions by detecting resistivity co...

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Main Authors: Hilmi Zaenal Putra Moch, Tohari Adrin, Soebowo Eko, Sudrajat Yayat, Amar, Wahyudin, Wardhana Dadan Dani
Format: Article
Language:English
Published: EDP Sciences 2025-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2025/04/e3sconf_icdm2024_12002.pdf
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author Hilmi Zaenal Putra Moch
Tohari Adrin
Soebowo Eko
Sudrajat Yayat
Amar
Wahyudin
Wardhana Dadan Dani
author_facet Hilmi Zaenal Putra Moch
Tohari Adrin
Soebowo Eko
Sudrajat Yayat
Amar
Wahyudin
Wardhana Dadan Dani
author_sort Hilmi Zaenal Putra Moch
collection DOAJ
description This study presents an enhanced approach for subsurface investigation using Electrical Resistivity Tomography (ERT) coupled with precise positioning tools, focusing on the Rongga Landslide in Indonesia. ERT is widely recognized for its ability to map subsurface conditions by detecting resistivity contrasts associated with geological structures and water content, especially in landslide-prone areas. The study combines GPS and digital waterpass altimeter with ERT to improve the precision of subsurface anomaly detection. Important information regarding moisture distribution, graben structures, and sliding surfaces was revealed by the generation of two ERT profiles. Our research indicates that a number of factors, including lithological characteristics, erosion along riverbanks, and tectonic activity—specifically, a nearby fault structure—may have contributed to the Rongga landslide These findings highlight the usefulness of ERT to evaluate the risk of landslides and offer useful data for geotechnical research in tectonically active areas.
format Article
id doaj-art-4c10e4d115a147c297bdb3e27632c78b
institution Kabale University
issn 2267-1242
language English
publishDate 2025-01-01
publisher EDP Sciences
record_format Article
series E3S Web of Conferences
spelling doaj-art-4c10e4d115a147c297bdb3e27632c78b2025-02-05T10:47:53ZengEDP SciencesE3S Web of Conferences2267-12422025-01-016041200210.1051/e3sconf/202560412002e3sconf_icdm2024_12002Enhanced subsurface investigation utilizing electrical resistivity tomography and precise positioning tools (study case: Rongga landslide)Hilmi Zaenal Putra Moch0Tohari Adrin1Soebowo Eko2Sudrajat Yayat3Amar4Wahyudin5Wardhana Dadan Dani6Geological Disaster Research Center, National Research and Innovation AgencyGeological Disaster Research Center, National Research and Innovation AgencyGeological Disaster Research Center, National Research and Innovation AgencyGeological Disaster Research Center, National Research and Innovation AgencyGeological Disaster Research Center, National Research and Innovation AgencyGeological Disaster Research Center, National Research and Innovation AgencyGeological Disaster Research Center, National Research and Innovation AgencyThis study presents an enhanced approach for subsurface investigation using Electrical Resistivity Tomography (ERT) coupled with precise positioning tools, focusing on the Rongga Landslide in Indonesia. ERT is widely recognized for its ability to map subsurface conditions by detecting resistivity contrasts associated with geological structures and water content, especially in landslide-prone areas. The study combines GPS and digital waterpass altimeter with ERT to improve the precision of subsurface anomaly detection. Important information regarding moisture distribution, graben structures, and sliding surfaces was revealed by the generation of two ERT profiles. Our research indicates that a number of factors, including lithological characteristics, erosion along riverbanks, and tectonic activity—specifically, a nearby fault structure—may have contributed to the Rongga landslide These findings highlight the usefulness of ERT to evaluate the risk of landslides and offer useful data for geotechnical research in tectonically active areas.https://www.e3s-conferences.org/articles/e3sconf/pdf/2025/04/e3sconf_icdm2024_12002.pdf
spellingShingle Hilmi Zaenal Putra Moch
Tohari Adrin
Soebowo Eko
Sudrajat Yayat
Amar
Wahyudin
Wardhana Dadan Dani
Enhanced subsurface investigation utilizing electrical resistivity tomography and precise positioning tools (study case: Rongga landslide)
E3S Web of Conferences
title Enhanced subsurface investigation utilizing electrical resistivity tomography and precise positioning tools (study case: Rongga landslide)
title_full Enhanced subsurface investigation utilizing electrical resistivity tomography and precise positioning tools (study case: Rongga landslide)
title_fullStr Enhanced subsurface investigation utilizing electrical resistivity tomography and precise positioning tools (study case: Rongga landslide)
title_full_unstemmed Enhanced subsurface investigation utilizing electrical resistivity tomography and precise positioning tools (study case: Rongga landslide)
title_short Enhanced subsurface investigation utilizing electrical resistivity tomography and precise positioning tools (study case: Rongga landslide)
title_sort enhanced subsurface investigation utilizing electrical resistivity tomography and precise positioning tools study case rongga landslide
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2025/04/e3sconf_icdm2024_12002.pdf
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