Geoelectrical Resistivity Profiling Surveys as a Guide for Geotechnical Pile Capacity Design Calculations: A Case Study

Developing critical infrastructure in quaternary marine deposits requires detailed preliminary information to design a construction plan. The preferred approach for soil physical and mechanical properties determination is testing and analyzing soil samples obtained through drilling and subsurface in...

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Main Authors: Taher T.M., Omar R.C., Wahab W.A., Roslan R., Solemon B., Rafek A.G.M., Jaapar A.R., Isa A.A.M.
Other Authors: 57195257852
Format: Book chapter
Published: Springer Science and Business Media Deutschland GmbH 2024
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spelling my.uniten.dspace-343452024-10-14T11:19:11Z Geoelectrical Resistivity Profiling Surveys as a Guide for Geotechnical Pile Capacity Design Calculations: A Case Study Taher T.M. Omar R.C. Wahab W.A. Roslan R. Solemon B. Rafek A.G.M. Jaapar A.R. Isa A.A.M. 57195257852 35753735300 56040257700 57159693200 24832320000 21743487800 57361879800 58074943900 Critical infrastructure Energy Mackintosh probe Pile capacity Resistivity Developing critical infrastructure in quaternary marine deposits requires detailed preliminary information to design a construction plan. The preferred approach for soil physical and mechanical properties determination is testing and analyzing soil samples obtained through drilling and subsurface investigations. Resistivity profiling surveys are commonly related to the energy industry. Thus, this study used resistivity profiling to establish an initial relationship using geoelectrical resistivity values with a standard penetration test, SPT-N value. Based on the profile, a low resistivity value ranging between 25.5 and 15.8 ?.m and thickness from 3.0�m to 9.2 m signifies a saturated zone. Electrical resistivity showed a significant correlation with soil properties as the finding recorded low resistivity in soft sandy clay with an N value lower than 7, while firmer soil has an N value greater than 7. The findings are also applied to obtain parameters that can estimate early design, especially in determining geotechnical pile capacity. � The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd. 2023. Final 2024-10-14T03:19:11Z 2024-10-14T03:19:11Z 2023 Book chapter 10.1007/978-981-99-3708-0_16 2-s2.0-85185916980 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85185916980&doi=10.1007%2f978-981-99-3708-0_16&partnerID=40&md5=a749266f5eb554185ef89aa1c36468ae https://irepository.uniten.edu.my/handle/123456789/34345 Part F2265 223 239 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 Critical infrastructure
Energy
Mackintosh probe
Pile capacity
Resistivity
spellingShingle Critical infrastructure
Energy
Mackintosh probe
Pile capacity
Resistivity
Taher T.M.
Omar R.C.
Wahab W.A.
Roslan R.
Solemon B.
Rafek A.G.M.
Jaapar A.R.
Isa A.A.M.
Geoelectrical Resistivity Profiling Surveys as a Guide for Geotechnical Pile Capacity Design Calculations: A Case Study
description Developing critical infrastructure in quaternary marine deposits requires detailed preliminary information to design a construction plan. The preferred approach for soil physical and mechanical properties determination is testing and analyzing soil samples obtained through drilling and subsurface investigations. Resistivity profiling surveys are commonly related to the energy industry. Thus, this study used resistivity profiling to establish an initial relationship using geoelectrical resistivity values with a standard penetration test, SPT-N value. Based on the profile, a low resistivity value ranging between 25.5 and 15.8 ?.m and thickness from 3.0�m to 9.2 m signifies a saturated zone. Electrical resistivity showed a significant correlation with soil properties as the finding recorded low resistivity in soft sandy clay with an N value lower than 7, while firmer soil has an N value greater than 7. The findings are also applied to obtain parameters that can estimate early design, especially in determining geotechnical pile capacity. � The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd. 2023.
author2 57195257852
author_facet 57195257852
Taher T.M.
Omar R.C.
Wahab W.A.
Roslan R.
Solemon B.
Rafek A.G.M.
Jaapar A.R.
Isa A.A.M.
format Book chapter
author Taher T.M.
Omar R.C.
Wahab W.A.
Roslan R.
Solemon B.
Rafek A.G.M.
Jaapar A.R.
Isa A.A.M.
author_sort Taher T.M.
title Geoelectrical Resistivity Profiling Surveys as a Guide for Geotechnical Pile Capacity Design Calculations: A Case Study
title_short Geoelectrical Resistivity Profiling Surveys as a Guide for Geotechnical Pile Capacity Design Calculations: A Case Study
title_full Geoelectrical Resistivity Profiling Surveys as a Guide for Geotechnical Pile Capacity Design Calculations: A Case Study
title_fullStr Geoelectrical Resistivity Profiling Surveys as a Guide for Geotechnical Pile Capacity Design Calculations: A Case Study
title_full_unstemmed Geoelectrical Resistivity Profiling Surveys as a Guide for Geotechnical Pile Capacity Design Calculations: A Case Study
title_sort geoelectrical resistivity profiling surveys as a guide for geotechnical pile capacity design calculations: a case study
publisher Springer Science and Business Media Deutschland GmbH
publishDate 2024
_version_ 1814060091103510528
score 13.214268