THERMAL CONDUCTIVITY VALUES OF SOME SANDSTONES AND SHALES FROM THE BELAIT FORMATION

The Belait Formation has been found to mainly consist of alternating sandstone and shale with conglomerate as the basal unit. There are five main facies that could be classified in the Belait Formation. 1) Sandstone, 2) Sandstone with Clay Drapes, 3) Sandstone with Carbonaceous Material, 4) Shale, a...

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Main Authors: Masnan, Safiq, Padmanabhan, Eswaran, Mokhtar, Mohd Afiq, Ganeson, Rajamohan, Viswanathan, Prasanna
Format: Article
Published: Geological Society of Malaysia 2010
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Online Access:http://eprints.utp.edu.my/3915/1/Manuscript_Safiq_Thermal.pdf
http://eprints.utp.edu.my/3915/
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spelling my.utp.eprints.39152017-03-20T07:36:12Z THERMAL CONDUCTIVITY VALUES OF SOME SANDSTONES AND SHALES FROM THE BELAIT FORMATION Masnan, Safiq Padmanabhan, Eswaran Mokhtar, Mohd Afiq Ganeson, Rajamohan Viswanathan, Prasanna QE Geology The Belait Formation has been found to mainly consist of alternating sandstone and shale with conglomerate as the basal unit. There are five main facies that could be classified in the Belait Formation. 1) Sandstone, 2) Sandstone with Clay Drapes, 3) Sandstone with Carbonaceous Material, 4) Shale, and 5) Conglomerate. Thermal conductivity analysis was done on the rock samples to understand the heat transfer between different rock facies. Apart from that, understanding the thermal conductivity characteristics enhances basin modeling and reservoir characterization. The general objective of this study was to estimate the thermal conductivities of rocks belonging to the Belait Formation and to link this information to the properties any possible signature trends that might bench mark the Formation. The study shows that there is an inverse relationship between the thermal conductivity and petrophysical properties such as porosity and particle size. The sedimentary rocks of the Belait Formation tend to have thermal conductivity values that are controlled by the internal fabric of the rocks. The relationship between thermal conductivity, porosity and particle size suggests that the trend line may be a unique signature for the Belait Formation. Geological Society of Malaysia 2010-01 Article PeerReviewed application/pdf http://eprints.utp.edu.my/3915/1/Manuscript_Safiq_Thermal.pdf Masnan, Safiq and Padmanabhan, Eswaran and Mokhtar, Mohd Afiq and Ganeson, Rajamohan and Viswanathan, Prasanna (2010) THERMAL CONDUCTIVITY VALUES OF SOME SANDSTONES AND SHALES FROM THE BELAIT FORMATION. Newsletter of the Geological Society of Malaysia, 36 (1). pp. 1-4. ISSN 0126-5539 PP2509/07/2011(028111) http://eprints.utp.edu.my/3915/
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
topic QE Geology
spellingShingle QE Geology
Masnan, Safiq
Padmanabhan, Eswaran
Mokhtar, Mohd Afiq
Ganeson, Rajamohan
Viswanathan, Prasanna
THERMAL CONDUCTIVITY VALUES OF SOME SANDSTONES AND SHALES FROM THE BELAIT FORMATION
description The Belait Formation has been found to mainly consist of alternating sandstone and shale with conglomerate as the basal unit. There are five main facies that could be classified in the Belait Formation. 1) Sandstone, 2) Sandstone with Clay Drapes, 3) Sandstone with Carbonaceous Material, 4) Shale, and 5) Conglomerate. Thermal conductivity analysis was done on the rock samples to understand the heat transfer between different rock facies. Apart from that, understanding the thermal conductivity characteristics enhances basin modeling and reservoir characterization. The general objective of this study was to estimate the thermal conductivities of rocks belonging to the Belait Formation and to link this information to the properties any possible signature trends that might bench mark the Formation. The study shows that there is an inverse relationship between the thermal conductivity and petrophysical properties such as porosity and particle size. The sedimentary rocks of the Belait Formation tend to have thermal conductivity values that are controlled by the internal fabric of the rocks. The relationship between thermal conductivity, porosity and particle size suggests that the trend line may be a unique signature for the Belait Formation.
format Article
author Masnan, Safiq
Padmanabhan, Eswaran
Mokhtar, Mohd Afiq
Ganeson, Rajamohan
Viswanathan, Prasanna
author_facet Masnan, Safiq
Padmanabhan, Eswaran
Mokhtar, Mohd Afiq
Ganeson, Rajamohan
Viswanathan, Prasanna
author_sort Masnan, Safiq
title THERMAL CONDUCTIVITY VALUES OF SOME SANDSTONES AND SHALES FROM THE BELAIT FORMATION
title_short THERMAL CONDUCTIVITY VALUES OF SOME SANDSTONES AND SHALES FROM THE BELAIT FORMATION
title_full THERMAL CONDUCTIVITY VALUES OF SOME SANDSTONES AND SHALES FROM THE BELAIT FORMATION
title_fullStr THERMAL CONDUCTIVITY VALUES OF SOME SANDSTONES AND SHALES FROM THE BELAIT FORMATION
title_full_unstemmed THERMAL CONDUCTIVITY VALUES OF SOME SANDSTONES AND SHALES FROM THE BELAIT FORMATION
title_sort thermal conductivity values of some sandstones and shales from the belait formation
publisher Geological Society of Malaysia
publishDate 2010
url http://eprints.utp.edu.my/3915/1/Manuscript_Safiq_Thermal.pdf
http://eprints.utp.edu.my/3915/
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