Assessment of Slope Instability Caused by Weathering Process in Pergau-Batu Melintang, Kelantan

This paper aims to assess the subsurface integrity and stability of the slope in the Pergau-Batu Melintang electrical energy production area, located on a highland and near the slope edge, which may pose a risk. Two geophysical survey techniques were used to evaluate the slope's stability: elec...

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Main Authors: Wahab W.A., Omar R.C., Jaapar A.R., Taher T.M., Roslan R., Baharuddin I.N.Z., Solemon B., Khalid N.H.N., Isa A.A.M., Zarime N.A.
Other Authors: 56040257700
Format: Book chapter
Published: Springer Science and Business Media Deutschland GmbH 2024
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spelling my.uniten.dspace-344312024-10-14T11:19:44Z Assessment of Slope Instability Caused by Weathering Process in Pergau-Batu Melintang, Kelantan Wahab W.A. Omar R.C. Jaapar A.R. Taher T.M. Roslan R. Baharuddin I.N.Z. Solemon B. Khalid N.H.N. Isa A.A.M. Zarime N.A. 56040257700 35753735300 57361879800 57195257852 57159693200 55812431300 24832320000 55812452000 58074943900 56593247000 Assessment Electrical energy Instabilities Slope Slope Weathering This paper aims to assess the subsurface integrity and stability of the slope in the Pergau-Batu Melintang electrical energy production area, located on a highland and near the slope edge, which may pose a risk. Two geophysical survey techniques were used to evaluate the slope's stability: electrical resistivity and seismic survey through in situ testing. The electrical resistivity test has the advantage of producing both subsurface resistivity and the ground's resistivity index. Meanwhile, the seismic survey aimed to identify any subsurface homogeneity. This study assessed the slope stability due to rock weathering by combining in situ testing, geophysical survey, laboratory testing, rock quality designation (RQD%), standard penetration test (SPT) N values, and macroscopic and microscopic rock identification. Slope-W software was used to simulate and determine the slope's Factor of Safety (FOS). The FOS results indicate that the method utilised in this study offers a promising discovery and a correlation between the impact of weathering processes and slope instability. � The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd. 2023. Final 2024-10-14T03:19:44Z 2024-10-14T03:19:44Z 2023 Book chapter 10.1007/978-981-99-3708-0_11 2-s2.0-85185939529 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85185939529&doi=10.1007%2f978-981-99-3708-0_11&partnerID=40&md5=a4b3cd681842db31ad1e5aaff19a740e https://irepository.uniten.edu.my/handle/123456789/34431 Part F2265 159 171 Springer Science and Business Media Deutschland GmbH Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
topic Assessment
Electrical energy
Instabilities
Slope
Slope
Weathering
spellingShingle Assessment
Electrical energy
Instabilities
Slope
Slope
Weathering
Wahab W.A.
Omar R.C.
Jaapar A.R.
Taher T.M.
Roslan R.
Baharuddin I.N.Z.
Solemon B.
Khalid N.H.N.
Isa A.A.M.
Zarime N.A.
Assessment of Slope Instability Caused by Weathering Process in Pergau-Batu Melintang, Kelantan
description This paper aims to assess the subsurface integrity and stability of the slope in the Pergau-Batu Melintang electrical energy production area, located on a highland and near the slope edge, which may pose a risk. Two geophysical survey techniques were used to evaluate the slope's stability: electrical resistivity and seismic survey through in situ testing. The electrical resistivity test has the advantage of producing both subsurface resistivity and the ground's resistivity index. Meanwhile, the seismic survey aimed to identify any subsurface homogeneity. This study assessed the slope stability due to rock weathering by combining in situ testing, geophysical survey, laboratory testing, rock quality designation (RQD%), standard penetration test (SPT) N values, and macroscopic and microscopic rock identification. Slope-W software was used to simulate and determine the slope's Factor of Safety (FOS). The FOS results indicate that the method utilised in this study offers a promising discovery and a correlation between the impact of weathering processes and slope instability. � The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd. 2023.
author2 56040257700
author_facet 56040257700
Wahab W.A.
Omar R.C.
Jaapar A.R.
Taher T.M.
Roslan R.
Baharuddin I.N.Z.
Solemon B.
Khalid N.H.N.
Isa A.A.M.
Zarime N.A.
format Book chapter
author Wahab W.A.
Omar R.C.
Jaapar A.R.
Taher T.M.
Roslan R.
Baharuddin I.N.Z.
Solemon B.
Khalid N.H.N.
Isa A.A.M.
Zarime N.A.
author_sort Wahab W.A.
title Assessment of Slope Instability Caused by Weathering Process in Pergau-Batu Melintang, Kelantan
title_short Assessment of Slope Instability Caused by Weathering Process in Pergau-Batu Melintang, Kelantan
title_full Assessment of Slope Instability Caused by Weathering Process in Pergau-Batu Melintang, Kelantan
title_fullStr Assessment of Slope Instability Caused by Weathering Process in Pergau-Batu Melintang, Kelantan
title_full_unstemmed Assessment of Slope Instability Caused by Weathering Process in Pergau-Batu Melintang, Kelantan
title_sort assessment of slope instability caused by weathering process in pergau-batu melintang, kelantan
publisher Springer Science and Business Media Deutschland GmbH
publishDate 2024
_version_ 1814061120312311808
score 13.214268