Facies Analysis and Thin-Section Petrography for Determining the Lithological Characteristics of Deep-Water Deposits: A Literature Review
DOI:
https://doi.org/10.61132/globe.v4i2.1360Keywords:
Deep-Water Deposits, Diagenesis, Facies Analysis, Lithofacies, Thin-Section PetrographyAbstract
Facies analysis and thin-section petrography are complementary and essential approaches for determining the lithological characteristics of deep-water deposits. Deep-water sediments are formed by diverse depositional processes such as turbidity currents, debris flows, slumps, and pelagic suspension settling, producing a wide range of lithofacies with distinctive textural, compositional, and sedimentary structural attributes. This literature review synthesizes studies that apply facies analysis and thin-section petrography to characterize deep-water deposits across various basins and geological ages worldwide. Field-based facies analysis emphasizes lithology, sedimentary structures, bed geometry, and vertical–lateral facies relationships to reconstruct depositional environments. In contrast, thin-section petrography provides microscopic insights into mineral composition, grain texture, cement types, porosity, and diagenetic features that are not observable in the field. The integration of these methods, often combined with advanced techniques such as XRD, SEM, and geochemical analyses, has proven effective in distinguishing lithofacies, understanding sedimentary processes, and evaluating reservoir quality. The review highlights that grain size, sorting, cement type, pore-throat size, and diagenetic processes are key controls on lithological characteristics and reservoir potential in deep-water systems. Therefore, the combined application of facies analysis and thin-section petrography provides a comprehensive framework for interpreting deep-water sedimentary systems.
References
Alam, M., Rahman, M. M., Gazi, Md. Y., Zaman, M. N., & Lupin, J. H. (2024). Depositional Environment and Reservoir Prospect Analysis of Barail Sandstone Exposed in the Northeastern Part of Bangladesh. The Dhaka University Journal of Earth and Environmental Sciences. https://doi.org/10.3329/dujees.v12i1.70557
Al-Mashaikie, S. Z. A. K., & Mohammed, Y. A. (2017). Facies Analysis of The Siliciclastic-calciturbidites, Gercus Formation In Dokan Area, Ne-Iraq; New Insight On Deposition Enviroment And Basin Evolution. Iraqi Journal of Science, 462–481.
Armas, P., Moreno, C., Sánchez, M. L., & González, F. (2014). Sedimentary Palaeoenvironment, Petrography, Provenance and Diagenetic Inference of the Anacleto Formation in the Neuquén Basin, Late Cretaceous, Argentina. Journal of South American Earth Sciences. https://doi.org/10.1016/j.jsames.2014.03.004
Basílici, G., Vieira Luca, P. H., & Poiré, D. G. (2012). Hummocky Cross-Stratification-Like Structures and Combined-Flow Ripples in the Punta Negra Formation (Lower-Middle Devonian, Argentine Precordillera): A Turbiditic Deep-Water or Storm-Dominated Prodelta Inner-Shelf System? Sedimentary Geology. https://doi.org/10.1016/j.sedgeo.2012.05.012
Benavente, C. A., Bohacs, K. M., & Pla‐Pueyo, S. (2025). Water pathways and ancient lakes: Flowing towards new models to unravel the past. The Depositional Record, 11(5), 1554–1562. https://doi.org/10.1002/dep2.70016
Benyamin, B., Pratiwi, P., & Indah, F. (2022). A Unique Volcanic Jatibarang Reservoir: Facies Characterization and Fracture Calculation. Aceh International Journal of Science and Technology, 11(3), 220–230. https://doi.org/10.13170/aijst.11.3.24026
Boulvain, F., Poulain, G., Tourneur, F., & Yans, J. (2020). Potential Discrimination of Belgian Black Marbles Using Petrography, Magnetic Susceptibility and Geochemistry. Archaeometry, 62(3), 469–492. https://doi.org/10.1111/arcm.12530
Counts, J. W., & Amos, K. (2016). Sedimentology, Depositional Environments and Significance of an Ediacaran Salt‐withdrawal Minibasin, Billy Springs Formation, Flinders Ranges, South Australia. Sedimentology. https://doi.org/10.1111/sed.12250
Dargahi, H. J., & Rezaee, R. (2013). Lithofacies and Sequence Stratigraphic Framework of the Kockatea Shale, Dandaragan Trough, Perth Basin. The Appea Journal. https://doi.org/10.1071/aj12001
Feng, Z.-Z. (2019). A Review on the Definitions of Terms of Sedimentary Facies. Journal of Palaeogeography. https://doi.org/10.1186/s42501-019-0045-3
Geçer, A., Büyükutku, A. G., Carmo Caetano, P. do, Rocha, F., Kibris, M. E., & Albayrak, M. (2019). Reservoir Potential of the Haymana Formation Submarine-Fan Sandstones in the Haymana Basin of Turkey. Journal of Petroleum Exploration and Production Technology. https://doi.org/10.1007/s13202-019-0666-1
Khan, N., Weltje, G. J., Jan, I. U., & Swennen, R. (2022). Depositional and Diagenetic Constraints on the Quality of Shale‐gas Reservoirs: A Case Study From the Late Palaeocene of the Potwar Basin (Pakistan, Eastern Tethys). Geological Journal. https://doi.org/10.1002/gj.4439
Lai, J., Wang, G., Cai, C., Fan, Z., Wang, S., Chen, J., & Luo, G. (2017). Diagenesis and Reservoir Quality in Tight Gas Sandstones: The Fourth Member of the Upper Triassic Xujiahe Formation, Central Sichuan Basin, Southwest China. Geological Journal. https://doi.org/10.1002/gj.2917
Li, M., Song, H., Wignall, P. B., She, Z., Dai, X., Song, H., & Xiao, Q. (2019). Early Triassic oceanic red beds coupled with deep sea oxidation in South Tethys. Sedimentary Geology, 391, 105519. https://doi.org/10.1016/j.sedgeo.2019.105519
Mehmood, M., Naseem, A. A., Saleem, M., Rehman, J. ur, Kontakiotis, G., Janjuhah, H. T., … Siyar, S. M. (2023). Sedimentary Facies, Architectural Elements, and Depositional Environments of the Maastrichtian Pab Formation in the Rakhi Gorge, Eastern Sulaiman Ranges, Pakistan. Journal of Marine Science and Engineering. https://doi.org/10.3390/jmse11040726
Meller, C., & Ledésert, B. (2017). Is There a Link Between Mineralogy, Petrophysics, and the Hydraulic and Seismic Behaviors of the Soultz‐sous‐Forêts Granite During Stimulation? A Review and Reinterpretation of Petro‐Hydromechanical Data Toward a Better Understanding of Induced Seismicity and Fluid Flow. Journal of Geophysical Research: Solid Earth, 122(12), 9755–9774. https://doi.org/10.1002/2017JB014648
Moyano-Paz, D., Gómez-Dacal, A. R., Varela, A. N., Comerio, M., Muñoz-Olivero, T. M., Bucher, J., … Poiré, D. G. (2022). Controls on composition and diagenesis of wave- and river-dominated deltas: Impacts on reservoir properties. An example from the La Anita Formation (Argentina). Marine and Petroleum Geology, 138, 105571. https://doi.org/10.1016/j.marpetgeo.2022.105571
Muljana, B., Mardiana, U., Hardiyono, A., Sulaksana, N., Setiadi, D. J., Jurnaliah, L., & Nurdrajat, N. (2021). Lithofacies and Ichnofacies of Turbidite Deposits, West Java, Indonesia. Fossil Imprint. https://doi.org/10.37520/fi.2021.001
Muñoz-Cervera, M. C., & Cañaveras, J. C. (2023). Diagenetic Study of Marrón Emperador Ornamental Stone (Upper Cretaceous, SE Spain). Applied Sciences, 13(9), 5470. https://doi.org/10.3390/app13095470
Nugraha, G. S., Sunardi, E., Haryanto, I., Adhiperdana, B. G., Fakhruddin, R., Fitriany, R., & Gunarsih, D. (2023). Facies Analysis, Biostratigraphy, and Provenance of the Late Neogene Seulimeum Formation, Northwest Aceh Basin, Sumatra (Indonesia). Heliyon. https://doi.org/10.1016/j.heliyon.2023.e20032
Nugrahanto, K. N., Syafri, I., & Muljana, B. (2021). QFL AND LITHO FACIES: PREDICTING RESERVOIR QUALITY OF THE MIDDLE MIOCENE DEEP-WATER FACIES AT KUTEI AND NORTH MAKASSAR BASINS. BULLETIN OF THE MARINE GEOLOGY, 36(1). https://doi.org/10.32693/bomg.36.1.2021.706
Orme, D. A., Laskowski, A. K., Zilinsky, M. F., Wang, C., Guo, X., Cai, F., & Ding, L. (2020). Sedimentology and Provenance of Newly Identified Upper Cretaceous Trench Basin Strata, Dênggar, Southern Tibet: Implications for Development of the Eurasian Margin Prior to India–Asia Collision. Basin Research. https://doi.org/10.1111/bre.12521
Peng, J. (2020). Sedimentology of the Upper Pennsylvanian Organic‐rich Cline Shale, Midland Basin: From Gravity Flows to Pelagic Suspension Fallout. Sedimentology. https://doi.org/10.1111/sed.12811
Qureshi, K. A., Arif, M., Basit, A., Ahmad, S., Janjuhah, H. T., & Kontakiotis, G. (2023). Sedimentological Controls on the Reservoir Characteristics of the Mid-Triassic Tredian Formation in the Salt and Trans-Indus Surghar Ranges, Pakistan: Integration of Outcrop, Petrographic, and SEM Analyses. Journal of Marine Science and Engineering. https://doi.org/10.3390/jmse11051019
Radwan, A. E. (2020). Modeling the Depositional Environment of the Sandstone Reservoir in the Middle Miocene Sidri Member, Badri Field, Gulf of Suez Basin, Egypt: Integration of Gamma-Ray Log Patterns and Petrographic Characteristics of Lithology. Natural Resources Research. https://doi.org/10.1007/s11053-020-09757-6
Ragusa, J., Ospina-Ostios, L. M., Kindler, P., & Sartori, M. (2021). Stratigraphic Revision and Reconstruction of the Deep-Sea Fan of the Voirons Flysch (Voirons Nappe, Chablais Prealps). Swiss Journal of Geosciences. https://doi.org/10.1186/s00015-020-00383-1
Rahman, A. A., Ambarsari, D. S., Sukmono, S., Wardaya, P., & Murdianto, B. (2025). Facies analysis with seismic attribute for net paying sand in late Miocene at Kutai Basin. IOP Conference Series: Earth and Environmental Science, 1458(1), 012005. https://doi.org/10.1088/1755-1315/1458/1/012005
Ramli, M. T. L., Amijaya, H., & Akmaluddin, A. (2021). The Lithofacies of Pandua Formation Shale in the Andowia Area, North Konawe, Southeast Sulawesi and Its Potential as Petroleum Source Rock. E3s Web of Conferences. https://doi.org/10.1051/e3sconf/202132508013
Salehi, M. A., Wilmsen, M., Zamanian, E., Baniasad, A., & Heubeck, C. (2023). Depositional and thermal history of a continental, coal-bearing Middle Jurassic succession from Iran: Hojedk Formation, northern Tabas Block. Geological Magazine, 160(2), 235–259. https://doi.org/10.1017/S0016756822000814
Song, Y., Wan, L., Xu, S., Gao, B., Li, C., Li, Z., & Paerzhana, P. (2024). Lake-Level-Fluctuation Control on Shale Oil Enrichment of the Salinized Lacustrine Organic-Rich Shale in the Paleogene Biyang Depression, East China. Minerals, 14(1), 94. https://doi.org/10.3390/min14010094
van Merwe, W. C., Hodgson, D. M., & Flint, S. S. (2009). Widespread Syn‐sedimentary Deformation on a Muddy Deep‐water Basin‐floor: The Vischkuil Formation (Permian), Karoo Basin, South Africa. Basin Research. https://doi.org/10.1111/j.1365-2117.2009.00396.x
Wilson, M. E. J., Lewis, D., Yogi, O., Holland, D., Hombo, L., & Goldberg, A. (2013). Development of a Papua New Guinean onshore carbonate reservoir: A comparative borehole image (FMI) and petrographic evaluation. Marine and Petroleum Geology, 44, 164–195. https://doi.org/10.1016/j.marpetgeo.2013.02.018
Woo, J., Lee, H. S., Ozyer, C. A., & Rhee, C. W. (2021). Effect of Lamination on Shale Reservoir Properties: Case Study of the Montney Formation, Canada. Geofluids. https://doi.org/10.1155/2021/8853639
Zhang, B., Zeng, Z., Zhu, H., Yang, X., & Pang, L. (2023). Lithofacies and Depositional Models of the Fine-Grained Sedimentary Rocks of the Albian–Turonian Stage in the Rio Muni Basin, West Africa. Minerals. https://doi.org/10.3390/min13111388
Zhang, J., Hersi, O. S., Shi, S., Cao, Y., & Sun, J. (2022). Indicators for Identification of Lacustrine Sandstones of Sandy Debris‐flow Origin: A Case Study of Es1 Member, Palaeogene Shahejie Formation, Nanpu Sag, Bohai Bay Basin, China. Geological Journal. https://doi.org/10.1002/gj.4475
Zhang, K., Bai, G., Liu, L., Wang, H., Guo, Z., & Li, B. (2020). Diagenesis and reservoir quality of sandstones in the Eocene Shahejie Formation, Raoyang Sag (Jizhong Depression), Bohai Bay Basin, China. Geological Journal, 55(4), 2787–2804. https://doi.org/10.1002/gj.3535
Zhou, J., Lin, C., Liu, H., Zhang, G., Zhang, K., Yu, H., … Cai, Q. (2023). Lithofacies Classification and Itssignificance on Oil and Gas Exploration of the Permain Fengcheng Mixed Shale in the Hashan Area, Northwestern Junggar Basin, China. Energy Exploration & Exploitation. https://doi.org/10.1177/01445987231160564
Zou, Y., Chu, X., Wu, J., & Zhao, L. (2022). No evidence for Archean eclogite-facies metamorphism. Proceedings of the National Academy of Sciences, 119(39), e2208090119. https://doi.org/10.1073/pnas.2208090119
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2026 Globe: Publikasi Ilmu Teknik, Teknologi Kebumian, Ilmu Perkapalan

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.




