Facies Analysis and Depositional Model of The Middle-Upper Triassic Semantan Formation, Central Pahang, Malaysia
This study details the sedimentological analysis of the Middle-Upper Triassic Semantan Formation in the Jerantut-Temerloh-Kemayan region of central Pahang. Seven (F1-7) facies have been identified which are; F1) poorly sorted conglomerate, F2) pebbly sandstone, F3) structureless-to-parallel laminate...
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id-ugm-repo.2791742023-11-03T06:10:09Z https://repository.ugm.ac.id/279174/ Facies Analysis and Depositional Model of The Middle-Upper Triassic Semantan Formation, Central Pahang, Malaysia Mohamed, Muhammad Azfar Nasir, Mazshurraiezal Said, Mohd Syukri Choong, Chee Meng Sokiman, Mohamad Shaufi Akhir, Nur Asyraf Md Yusof, Muhammad Aslam Md Zakariah, Muhammad Noor Amin Rashid, Mohd Nizam Abdul Husein, Salahuddin Sulaimane, Noorzamzarina Mohd, Afiq Naim Engineering This study details the sedimentological analysis of the Middle-Upper Triassic Semantan Formation in the Jerantut-Temerloh-Kemayan region of central Pahang. Seven (F1-7) facies have been identified which are; F1) poorly sorted conglomerate, F2) pebbly sandstone, F3) structureless-to-parallel laminated sandstone, F4) wavy-to-ripple fine-to-medium laminated sandstone, F5) slumped thin-interbeded sandstone and shale, F6) interbedded sandstone and shale, and F7) shale, represent a subordinate part of the Semantan Formation. Examination of the succession of the vertical facies resulted in concession of genetic units (FA1-FA5) which are; FA1) deep channel complex, FA2) distal lobe, FA3) hybrid gravity flow deposit, FA4) channelised lobe and FA5) non-channelised lobe. It is believed that these five genetic units were deposited within four proposed laterally contiguous depositional environments which are; 1) Inner fan - deep channel-levee complex (represent by FA1), 2) Mid fan - channelised lobe (represented by FA5 and FA3), 3) Mid Fan - non-channelised lobe (represented by FA4 and FA3), and 4) Outer fan - distal lobe (represented by FA2). The Semantan Formation deep-water fan is analysed as a sand-rich fan system, based on its sediment types. Penerbit UTM Press 2022-05-31 Article PeerReviewed application/pdf en https://repository.ugm.ac.id/279174/1/Husein_TK.pdf Mohamed, Muhammad Azfar and Nasir, Mazshurraiezal and Said, Mohd Syukri and Choong, Chee Meng and Sokiman, Mohamad Shaufi and Akhir, Nur Asyraf Md and Yusof, Muhammad Aslam Md and Zakariah, Muhammad Noor Amin and Rashid, Mohd Nizam Abdul and Husein, Salahuddin and Sulaimane, Noorzamzarina and Mohd, Afiq Naim (2022) Facies Analysis and Depositional Model of The Middle-Upper Triassic Semantan Formation, Central Pahang, Malaysia. ASEAN Engineering Journal, 12 (2). pp. 195-203. ISSN 25869159 https://journals.utm.my/aej/article/view/17312 https://doi.org/10.11113/aej.v12.17312 |
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Engineering Mohamed, Muhammad Azfar Nasir, Mazshurraiezal Said, Mohd Syukri Choong, Chee Meng Sokiman, Mohamad Shaufi Akhir, Nur Asyraf Md Yusof, Muhammad Aslam Md Zakariah, Muhammad Noor Amin Rashid, Mohd Nizam Abdul Husein, Salahuddin Sulaimane, Noorzamzarina Mohd, Afiq Naim Facies Analysis and Depositional Model of The Middle-Upper Triassic Semantan Formation, Central Pahang, Malaysia |
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This study details the sedimentological analysis of the Middle-Upper Triassic Semantan Formation in the Jerantut-Temerloh-Kemayan region of central Pahang. Seven (F1-7) facies have been identified which are; F1) poorly sorted conglomerate, F2) pebbly sandstone, F3) structureless-to-parallel laminated sandstone, F4) wavy-to-ripple fine-to-medium laminated sandstone, F5) slumped thin-interbeded sandstone and shale, F6) interbedded sandstone and shale, and F7) shale, represent a subordinate part of the Semantan Formation. Examination of the succession of the vertical facies resulted in concession of genetic units (FA1-FA5) which are; FA1) deep channel complex, FA2) distal lobe, FA3) hybrid gravity flow deposit, FA4) channelised lobe and FA5) non-channelised lobe. It is believed that these five genetic units were deposited within four proposed laterally contiguous depositional environments which are; 1) Inner fan - deep channel-levee complex (represent by FA1), 2) Mid fan - channelised lobe (represented by FA5 and FA3), 3) Mid Fan - non-channelised lobe (represented by FA4 and FA3), and 4) Outer fan - distal lobe (represented by FA2). The Semantan Formation deep-water fan is analysed as a sand-rich fan system, based on its sediment types. |
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Article PeerReviewed |
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Mohamed, Muhammad Azfar Nasir, Mazshurraiezal Said, Mohd Syukri Choong, Chee Meng Sokiman, Mohamad Shaufi Akhir, Nur Asyraf Md Yusof, Muhammad Aslam Md Zakariah, Muhammad Noor Amin Rashid, Mohd Nizam Abdul Husein, Salahuddin Sulaimane, Noorzamzarina Mohd, Afiq Naim |
author_facet |
Mohamed, Muhammad Azfar Nasir, Mazshurraiezal Said, Mohd Syukri Choong, Chee Meng Sokiman, Mohamad Shaufi Akhir, Nur Asyraf Md Yusof, Muhammad Aslam Md Zakariah, Muhammad Noor Amin Rashid, Mohd Nizam Abdul Husein, Salahuddin Sulaimane, Noorzamzarina Mohd, Afiq Naim |
author_sort |
Mohamed, Muhammad Azfar |
title |
Facies Analysis and Depositional Model of The Middle-Upper Triassic Semantan Formation, Central Pahang, Malaysia |
title_short |
Facies Analysis and Depositional Model of The Middle-Upper Triassic Semantan Formation, Central Pahang, Malaysia |
title_full |
Facies Analysis and Depositional Model of The Middle-Upper Triassic Semantan Formation, Central Pahang, Malaysia |
title_fullStr |
Facies Analysis and Depositional Model of The Middle-Upper Triassic Semantan Formation, Central Pahang, Malaysia |
title_full_unstemmed |
Facies Analysis and Depositional Model of The Middle-Upper Triassic Semantan Formation, Central Pahang, Malaysia |
title_sort |
facies analysis and depositional model of the middle-upper triassic semantan formation, central pahang, malaysia |
publisher |
Penerbit UTM Press |
publishDate |
2022 |
url |
https://repository.ugm.ac.id/279174/1/Husein_TK.pdf https://repository.ugm.ac.id/279174/ https://journals.utm.my/aej/article/view/17312 https://doi.org/10.11113/aej.v12.17312 |
_version_ |
1781794707271057408 |