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Data for the subsurface characterization of Pahang River Basin with the application of Transient Electromagnetic geophysical surveys

The Transient Electro-Magnetic (TEM) geophysical technique was deployed to map and characterized the subsurface of Pahang River Basin along the East Coast Peninsula Malaysia. The data aimed at differentiating between the massive zones and the weak zones within the region, to also assess and differen...

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Autores principales: Arifin, Hariri, Kayode, John, Arifin, Khairul, Zahir, Zuhar, Abdullah, Manan, Azmi, Azrin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7191212/
https://www.ncbi.nlm.nih.gov/pubmed/32373680
http://dx.doi.org/10.1016/j.dib.2020.105491
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author Arifin, Hariri
Kayode, John
Arifin, Khairul
Zahir, Zuhar
Abdullah, Manan
Azmi, Azrin
author_facet Arifin, Hariri
Kayode, John
Arifin, Khairul
Zahir, Zuhar
Abdullah, Manan
Azmi, Azrin
author_sort Arifin, Hariri
collection PubMed
description The Transient Electro-Magnetic (TEM) geophysical technique was deployed to map and characterized the subsurface of Pahang River Basin along the East Coast Peninsula Malaysia. The data aimed at differentiating between the massive zones and the weak zones within the region, to also assess and differentiate the subsurface structures and comes up with recommendations for policy decision, formulation and plans on the flooding impact, surface water and groundwater managements, in addition to other environmental related issues ravaging the area. The data presented in this paper, showed the properties of the subsurface rocks underlain the region as beneficial to the Agriculturists; Climatologists; Engineers; Environmentalists; Geoscientists, Hydrologists and Policy formulation officers. The TEM data collection utilized a 100 m x 100 m single loop coil for both the Transmitter (Tx) loop and the Receiver (Rx) loop to produce a total surface area coverage of 10,000 m(2) per survey line along a single profile. The total area covered in the data extended across an average area of 30 km x 40 km in parts of Maran, Temerloh and Jerantut districts, within the State of Pahang, East Coast, Peninsula Malaysia. The conductivity data recorded varied from -20 mS/m to about 440 mS/m at a maximum depth of about 375 m. On the other hand, the resistivity data recorded varied from 0 Oh-m to about 1000 Oh-m. The information derived from the data are intended for potential abstraction by the Malaysian Groundwater Management Board; the Department of Mineral and Geoscience; Department of Irrigation and Drainage; the Pahang State Water Board, and the Department of Agriculture.
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spelling pubmed-71912122020-05-05 Data for the subsurface characterization of Pahang River Basin with the application of Transient Electromagnetic geophysical surveys Arifin, Hariri Kayode, John Arifin, Khairul Zahir, Zuhar Abdullah, Manan Azmi, Azrin Data Brief Earth and Planetary Science The Transient Electro-Magnetic (TEM) geophysical technique was deployed to map and characterized the subsurface of Pahang River Basin along the East Coast Peninsula Malaysia. The data aimed at differentiating between the massive zones and the weak zones within the region, to also assess and differentiate the subsurface structures and comes up with recommendations for policy decision, formulation and plans on the flooding impact, surface water and groundwater managements, in addition to other environmental related issues ravaging the area. The data presented in this paper, showed the properties of the subsurface rocks underlain the region as beneficial to the Agriculturists; Climatologists; Engineers; Environmentalists; Geoscientists, Hydrologists and Policy formulation officers. The TEM data collection utilized a 100 m x 100 m single loop coil for both the Transmitter (Tx) loop and the Receiver (Rx) loop to produce a total surface area coverage of 10,000 m(2) per survey line along a single profile. The total area covered in the data extended across an average area of 30 km x 40 km in parts of Maran, Temerloh and Jerantut districts, within the State of Pahang, East Coast, Peninsula Malaysia. The conductivity data recorded varied from -20 mS/m to about 440 mS/m at a maximum depth of about 375 m. On the other hand, the resistivity data recorded varied from 0 Oh-m to about 1000 Oh-m. The information derived from the data are intended for potential abstraction by the Malaysian Groundwater Management Board; the Department of Mineral and Geoscience; Department of Irrigation and Drainage; the Pahang State Water Board, and the Department of Agriculture. Elsevier 2020-04-23 /pmc/articles/PMC7191212/ /pubmed/32373680 http://dx.doi.org/10.1016/j.dib.2020.105491 Text en © 2020 The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Earth and Planetary Science
Arifin, Hariri
Kayode, John
Arifin, Khairul
Zahir, Zuhar
Abdullah, Manan
Azmi, Azrin
Data for the subsurface characterization of Pahang River Basin with the application of Transient Electromagnetic geophysical surveys
title Data for the subsurface characterization of Pahang River Basin with the application of Transient Electromagnetic geophysical surveys
title_full Data for the subsurface characterization of Pahang River Basin with the application of Transient Electromagnetic geophysical surveys
title_fullStr Data for the subsurface characterization of Pahang River Basin with the application of Transient Electromagnetic geophysical surveys
title_full_unstemmed Data for the subsurface characterization of Pahang River Basin with the application of Transient Electromagnetic geophysical surveys
title_short Data for the subsurface characterization of Pahang River Basin with the application of Transient Electromagnetic geophysical surveys
title_sort data for the subsurface characterization of pahang river basin with the application of transient electromagnetic geophysical surveys
topic Earth and Planetary Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7191212/
https://www.ncbi.nlm.nih.gov/pubmed/32373680
http://dx.doi.org/10.1016/j.dib.2020.105491
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