Hot Springs Characterisation And Geothermal Potential Study In Peninsula Malaysia From Geosciences Perspectives

Research works on the potentials of geothermal energy resources in the non-volcanic hot springs origins within the Peninsula Malaysia have not received the much-needed attention. This, therefore, serves as a major motivation to embark on the studies that focused on the Peninsula Malaysia areas to d...

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Main Author: Arifin, Mohd Hariri
Format: Thesis
Language:English
Published: 2017
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Online Access:http://eprints.usm.my/58345/1/Mohd%20Hariri%20Arifin.pdf
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spelling my-usm-ep.583452023-05-02T08:04:39Z Hot Springs Characterisation And Geothermal Potential Study In Peninsula Malaysia From Geosciences Perspectives 2017-08 Arifin, Mohd Hariri QC1 Physics (General) Research works on the potentials of geothermal energy resources in the non-volcanic hot springs origins within the Peninsula Malaysia have not received the much-needed attention. This, therefore, serves as a major motivation to embark on the studies that focused on the Peninsula Malaysia areas to determine the relationship among the geological, geochemical and geophysical prospection methods for the suitability of these non-volcanic hot springs origins as potential locations for the development of geothermal energy. A total of 60 hot springs locations distributed throughout the Peninsula Malaysia has been identified. These hot springs locations were classified into three major groups, namely; the Western Belt Granite, Central Belt Granite and the Eastern Belt Granite groups were all plotted together. Classifications of these non-volcanic hot springs origin was made by the same distribution pattern of the granites pluton and also close to the contact zones between the different rock types. The most significant faults in the study area; i.e.; (Baubak, Kuala Lumpur, Terengganu, Bukit Tinggi, Lebir, Lepar and Mersing) played a major role in the hot water circulation systems within the water catchment areas respectively. The geochemical analysis of the hot springs waters, confirmed that all the hot springs waters belongs to the non-volcanic origin types. Quartz and chalcedony are the most appropriate geothermometers and consistent with the range of temperatures obtained when compared to the cations and anions geothermometers. 2017-08 Thesis http://eprints.usm.my/58345/ http://eprints.usm.my/58345/1/Mohd%20Hariri%20Arifin.pdf application/pdf en public phd doctoral Perpustakaan Hamzah Sendut Pusat Pengajian Sains Fizik
institution Universiti Sains Malaysia
collection USM Institutional Repository
language English
topic QC1 Physics (General)
spellingShingle QC1 Physics (General)
Arifin, Mohd Hariri
Hot Springs Characterisation And Geothermal Potential Study In Peninsula Malaysia From Geosciences Perspectives
description Research works on the potentials of geothermal energy resources in the non-volcanic hot springs origins within the Peninsula Malaysia have not received the much-needed attention. This, therefore, serves as a major motivation to embark on the studies that focused on the Peninsula Malaysia areas to determine the relationship among the geological, geochemical and geophysical prospection methods for the suitability of these non-volcanic hot springs origins as potential locations for the development of geothermal energy. A total of 60 hot springs locations distributed throughout the Peninsula Malaysia has been identified. These hot springs locations were classified into three major groups, namely; the Western Belt Granite, Central Belt Granite and the Eastern Belt Granite groups were all plotted together. Classifications of these non-volcanic hot springs origin was made by the same distribution pattern of the granites pluton and also close to the contact zones between the different rock types. The most significant faults in the study area; i.e.; (Baubak, Kuala Lumpur, Terengganu, Bukit Tinggi, Lebir, Lepar and Mersing) played a major role in the hot water circulation systems within the water catchment areas respectively. The geochemical analysis of the hot springs waters, confirmed that all the hot springs waters belongs to the non-volcanic origin types. Quartz and chalcedony are the most appropriate geothermometers and consistent with the range of temperatures obtained when compared to the cations and anions geothermometers.
format Thesis
qualification_name Doctor of Philosophy (PhD.)
qualification_level Doctorate
author Arifin, Mohd Hariri
author_facet Arifin, Mohd Hariri
author_sort Arifin, Mohd Hariri
title Hot Springs Characterisation And Geothermal Potential Study In Peninsula Malaysia From Geosciences Perspectives
title_short Hot Springs Characterisation And Geothermal Potential Study In Peninsula Malaysia From Geosciences Perspectives
title_full Hot Springs Characterisation And Geothermal Potential Study In Peninsula Malaysia From Geosciences Perspectives
title_fullStr Hot Springs Characterisation And Geothermal Potential Study In Peninsula Malaysia From Geosciences Perspectives
title_full_unstemmed Hot Springs Characterisation And Geothermal Potential Study In Peninsula Malaysia From Geosciences Perspectives
title_sort hot springs characterisation and geothermal potential study in peninsula malaysia from geosciences perspectives
granting_institution Perpustakaan Hamzah Sendut
granting_department Pusat Pengajian Sains Fizik
publishDate 2017
url http://eprints.usm.my/58345/1/Mohd%20Hariri%20Arifin.pdf
_version_ 1776101217721647104