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Tytuł artykułu

Lineament depth deduction using geomorphometry and 3D Euler solution

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In this paper, we present a novel method for determining the depth of lineaments using satellite gravity data, which we test in the Sahel of Sfax area (eastern Tunisia). This region has a relatively flat topography with few significant discontinuities at the surface. As a first step, we used morphometric indices such as slope, aspect, and hydrographic network, calculated from SRTM DEM, to generate separate lineament maps. We then combined these lineaments into a synthetic lineament map, one that showed to be highly consistent with the Bouguer anomaly map deduced from satellite gravity data and the results of similar studies with gravity and seismic geophysical data. The lineament map was then refined and confirmed thanks to field data. These lineaments were later combined with the 3D Euler solution map, and their depth classification was deduced. These results demonstrate both the accuracy of the proposed method as a way to assess lineament depth and its ability to provide valuable information about an area's subsurface geology. This method can be useful for mineral exploration, hydrocarbon exploration, and geohazard assessments.
Czasopismo
Rocznik
Strony
1327--1342
Opis fizyczny
Bibliogr. 86 poz.
Twórcy
  • U. R. Structures Aéronautiques, Controle des Ecoulements et des Systemes (U. R. 17DN01), Ecole de l’Aviation de Borj el Amri, 1142 BorjAmri, La Manouba, Tunisia
  • Georesources Laboratory, Centre for Water Research and Technologies (CERTE), BO 273, 8020 Soliman, Tunisia
  • Geosystems Geomatics Laboratory (LR19ES07)/PRODIG (UMR 8586), Manouba University Campus, Faculty of Sciences of Bizerte, Carthage University, 7021 Bizerte, Tunisia
Bibliografia
  • 1. Ahmadi H, Pekkan E (2021) Fault-based geological lineaments extraction using remote sensing and GIS—a review. Geosciences 11(5):1-31
  • 2. Amari A, Bédir M (1989) Les bassins quaternaires du Sahel central de la Tunisie. Genese et évolution des sebkhas en contexte décro-chant compressif et distensif. Géodynamique 4(1):49-65
  • 3. Ananaba SE, Ajakaiye DE (1987) Evidence of tectonic control of mineralization in Nigeria from lineament density analysis A Landsat-study. Int J Remote Sens 8(10):1445-1453
  • 4. Ananaba SE, Ajakaiye DE (2007) Evidence of tectonic control of mineralization in Nigeria from lineament density analysis A Landsat-study. Int J Remote Sens 8(10):1445-1453
  • 5. Avinash K, Deepika B, Jayappa KS (2014) Basin geomorphology and drainage morphometry parameters used as indicators for groundwater prospect: insight from geographical information system (GIS) technique. J Earth Sci 25(6):1018-1032
  • 6. Bahrouni N, Houla Y, Fakhraoui M (2007) Carte géologique de la Tunisie a 1/50.000: Feuille de Mahares (N°115). In: Tunisie SGD (ed) Office National des Mines, Tunis, Tunisia
  • 7. Ballais J-L, Garry G, Masson M (2002) La place de l’hydrogéomorphologie dans les études d’inondation en France méditerranéenne/The contribution of hydrogeomorphology in flood hazard assessment: a review of the situation in southern France. Géomorphologie : Relief, Processus, Environnement 8(1):5-15
  • 8. Balmino G, Vales N, Bonvalot S, Briais A (2012) Spherical harmonic modelling to ultra-high degree of Bouguer and isostatic anomalies. J Geodesy 86(7):499-520
  • 9. Batayneh A, Ghrefat H, Diabat A (2012) Lineament characterization and their tectonic significance using gravity data and field studies in the Al-Jufr area, southeastern Jordan plateau. J Earth Sci 23(6):873-880
  • 10. Bedir M (1989) Controle tectonique et images sismiques de méga-structures syn-sédimentaires miocenes dans le Sahel de Mah-dia—Tunisie orientale. J Afr Earth Sc 9(3-4):657-663
  • 11. Bedir M (1995) Mécanismes géodynamiques des bassins associés aux couloirs de coulissements de la marge atlasique de la Tunisie séismo-stratigraphie, séismo-tectonique et implications pétrolieres. These de Doctorat, Université de Tunis II
  • 12. Ben Haj Ali M, Jedoui Y, Dali T, BenSalem H, Memmi L (1985) Carte géologique de la Tunisie a 1/500.000. In: Tunisie SGd (ed) Office National des Mines, Tunis, Tunisia
  • 13. Beven KJ, Kirkby MJ (1979) A physically based, variable contributing area model of basin hydrology/Un modele a base physique de zone d’appel variable de l’hydrologie du bassin versant. Hydrol Sci Bull 24(1):43-69
  • 14. Bishop MA (2011) SRTM DEM and ASTER GDEM use for the spatial geomorphometric analysis of global sand sea patterns. In: Hengl T, Evans IS, Wilson JP et al (eds) Proceedings of geomorphometry 2011. International society for geomorphometry, Redlands, CA, pp 147-150
  • 15. Bonvalot S, Balmino G, Briais A, Kuhn M, Peyrefitte A, Vales, Biancale R, Gabalda G, Reinquin F, Sarrailh M, (2012) World Gravity Map. Commission for the Geological Map of the World. In: BGI-CGMW-CNES-IRD (ed) Paris
  • 16. Borradaile J (2003) Statistics of Earth Science data: their distribution in time space and orientation. Springer, New York
  • 17. Bouaziz S, Sghari A, Ben Akacha M (2003) Carte géologique de la Tunisie a 1/50.000 : Feuille de Agareb (N°106). In: Tunisie SGd (ed) Office National des Mines, Tunis, Tunisia
  • 18. Burbank DW, Anderson RS (2001) Tectonic geomorphology. WileyBlackwell, Amsterdam
  • 19. Burbank DW, Pinter N (1999) Landscape evolution: the interactions of tectonics and surface processes. Basin Res 11(1):1-6
  • 20. Burns KL, Brown GH (1978) The human perception of geological lineaments and other discrete features in remote sensing imagery: signal strengths, noise levels and quality. Remote Sens Environ 7(2):163-176
  • 21. Burns KL, Shepherd J, Berman M (1976) Reproducibility of geological lineaments and other discrete features interpreted from imagery: measurement by a coefficient of association. Remote Sens Environ 5:267-301
  • 22. Burollet PF, Mugniot JM, Sweeney P (1978) The geology of the Pelagian block: the Margins and Basins off Southern Tunisia and Tripolitania. In: Nairn AM, Kanes W, Stehli F (eds) The Ocean Basins and Margins. Springer, New York, pp 331-359
  • 23. Burollet P-F (1956) Contribution a l'étude stratigraphique de la Tunisie centrale. Annales des Mines et de la Géologie, 18. Office National des Mines, Tunis
  • 24. Callow JN, Van Niel KP, Boggs GS (2007) How does modifying a DEM to reflect known hydrology affect subsequent terrain analysis? J Hydrol 332(1-2):30-39
  • 25. Campbell IB, O’Driscoll EST (1989) Lineament-hydrocarbon associations in the Cooper and Eromanga Basins. In: O’Neil BJ (ed) The Cooper & Eromanga Basins Australia. Petroleum Exploration Society of Australia, Australia
  • 26. Castany G (1952) Monographies régionales 2eme Série (Tuni-sie—N°6): Atlas tunisien oriental et Sahel. In: Castany G (ed) XIXeme Congres géologique international. Alger, Algérie
  • 27. Conforti M, Ietto F (2020) Influence of tectonics and morphometric features on the Landslide Distribution: a case study from the Mesima Basin (Calabria, South Italy). J Earth Sci 31(2):393-409
  • 28. Coque R, Jauzein A (1967) The geomorphology and Quaternary geology of Tunisia. In: Martin L, Shea JC, Burollet PF (eds) Guidebook to the geology and history of Tunisia. Petroleum Exploration Society of Libya, Amsterdam, pp 227-257
  • 29. Deffontaines B, Chorowicz J (1991) Principles of drainage basin analysis from multisource data: application to the structural analysis of the Zaire Basin. Tectonophysics 194(3):237-263
  • 30. Deffontaines B, Cadet J-P, Fourniguet J (1992) L’analyse des surfaces enveloppes appliquée a l’étude morpho-structurale de l’est de la France. Geodin Acta 5(4):279-292
  • 31. Delorme-Laurent V (2007) Contribution a la méthode hydrogéomor-phologique de détermination des zones inondablesThese en Géog-raphie Physique et Humaine. Urbanisme, Université Aix-Marseille I, Marseille, Aménagement, p 378
  • 32. Deng Y, Wilson JP, Bauer BO (2007) DEM resolution dependencies of terrain attributes across a landscape. Int J Geogr Inf Sci 21(2):187-213
  • 33. Dragut L, Eisank C (2011) Object representations at multiple scales from digital elevation models. Geomorphology 129(3-4):183-189
  • 34. El Ghali A, Ben Ayed N, Bobier C, Zargouni F, Krima A (2003) Les manifestations tectoniques synsédimentaires associées a la compression éocene en Tunisie: implications paléogéographiques et structurales sur la marge Nord-Africaine. CR Geosci 335(9):763-771
  • 35. El Koundi M, Essid EM, Razzag W, Ben Haj Ali M (2005) Les données SRTM: une nouvelle source de données topographiques. In: Tunisie SGd (ed) Le Systeme d’Informations Géologiques et Minieres, un outil stratégique de développement durable. Annales des Mines et de la Géologie, Office National des Mines, , Tunis, pp 17-23
  • 36. El Koundi M, Essid EM, El Ghali A, Allemand P, Delacourt C, Zargouni F (2009) Extraction automatique de linéaments géologiques a partir de données ASTER et Landsat ETM+. Notes Du Service Géologique De Tunisie 77:95-104
  • 37. El Koundi M, Allemand P, Zargouni F (2016) Geological mapping in semi-arid regions with low spectral contrast surfaces using ASTER data. J Appl Geol Geophys 4(1):09-20
  • 38. Elliott CI (1994) Lineament tectonics: an approach to basin analysis and exploration. In: Purcell PG, Purcell RR (eds) The sedimentary basins of Western Australia (proceedings of the West Australian basins symposium, Perth, Western Australia, August 30-Septem-ber 2, 1998). Petroleum Exploration Society of Australia
  • 39. Ghribi R, Bouaziz S (2010) Neotectonic evolution of the Eastern Tunisian platform from paleostress reconstruction. J Hydrocarb Mines Environ Res 1(1):14-25
  • 40. Haller P (1983) Structure profonde du Sahel tunisien. Interprétation géodynamique. Doctorat en géologie appliquée, Université de Franche-Comté
  • 41. He C, Cheng Y, Rao G, Chen P, Hu J, Yu Y, Yao Q (2018) Geomorphological signatures of the evolution of active normal faults along the Langshan Mountains. North China Geodinamica Acta 30(1):163-182
  • 42. Hill KC, Kendrick RD, Crowhurst PV, Gow PA (2002) Copper-gold mineralisation in New Guinea: Tectonics, lineaments, thermochronology and structure. Aust J Earth Sci 49(4):737-752
  • 43. Houla Y, Bahrouni N, Fakhraoui M (2007) Carte géologique de la Tunisie a 1/50.000 : Feuille de Sidi Salah (N°98). In: Tunisie SGd (ed) Office National des Mines, Tunis, Tunisia
  • 44. Howard AD (1967) Drainage analysis in geologic interpretation: a summation. AAPG Bull 51(11):2246-2259
  • 45. Huggel C, Schneider D, Miranda PJ, Delgado Granados H, Kääb A (2008) Evaluation of ASTER and SRTM DEM data for lahar modeling: a case study on lahars from Popocatépetl Volcano, Mexico. J Volcanol Geoth Res 170(1-2):99-110
  • 46. Hung LQ, Batelaan O, De Smedt F (2005) Lineament extraction and analysis, comparison of LANDSAT ETM and ASTER imagery. Case study: Suoimuoi tropical karst catchment, Vietnam, Remote Sensing for Environmental Monitoring, GIS Applications, and Geology V. SPIE, Brugge, Belgium, pp 59830T-59812
  • 47. John BL (2005) The Terrain analysis system: a tool for hydro-geomorphic applications. Hydrol Process 19(5):1123-1130
  • 48. Kääb A (2005) Combination of SRTM3 and repeat ASTER data for deriving alpine glacier flow velocities in the Bhutan Himalaya. Remote Sens Environ 94(4):463-474
  • 49. Khomsi S, Ben Jemia MG, de Lamotte DF, Maherssi C, Echihi O, Mezni R (2009) An overview of the Late Cretaceous-Eocene positive inversions and Oligo-Miocene subsidence events in the foreland of the Tunisian Atlas: Structural style and implications for the tectonic agenda of the Maghrebian Atlas system. Tectonophysics 475(1):38-58
  • 50. Li, Z., Zhu, Q., Gold, C., 2004. Digital terrain modeling: Principles and Methodology. CRC Press.
  • 51. Lyu C, Cheng Q, Zuo R, Wang X (2017) Mapping spatial distribution characteristics of lineaments extracted from remote sensing image using fractal and multifractal models. J Earth Sci 28(3):507-515
  • 52. Malczewski J (2006) GIS-based multicriteria decision analysis: a survey of the literature. Int J Geogr Inf Sci 20(7):703-726
  • 53. Matoš B, Pérez-Peňa JV, Tomljenović B (2016) Landscape response to recent tectonic deformation in the SW Pannonian Basin: evidence from DEM-based morphometric analysis of the Bilogora Mt. area NE Croatia. Geomorphology 263:132-155
  • 54. Mejri F, Burollet PF, Ben Ferjani A (2006) Petroleum Geology of Tunisia a Renewed Synthesis. ETAP, Tunis
  • 55. Melo FF, Barbosa VC, Uieda L, Oliveira VC Jr, Silva JB (2013) Estimating the nature and the horizontal and vertical positions of 3D magnetic sources using Euler deconvolution. Geophysics 78(6):J87-J98
  • 56. Minár J, Evans IS (2008) Elementary forms for land surface segmentation: the theoretical basis of terrain analysis and geomorphological mapping. Geomorphology 95(3-4):236-259
  • 57. Moore ID, Grayson RB, Ladson AR (1991) Digital terrain modelling: a review of hydrological, geomorphological, and biological applications. Hydrol Process 5(1):3-30
  • 58. Motoki A, Motoki KF, Sichel SE, Silva SD, Aires JR (2015) Principle and geomorphological applicability of summit level and base level technique using Aster Gdem satellite-derived data and the original software Baz. Acta Scientiarum-Technol 37:221-236
  • 59. Nikolakopoulos KG, Chrysoulakis N (2006) Updating the 1:50.000 topographic maps using ASTER and SRTM DEM: the case of Athens, Greece, Remote Sensing for Environmental Monitoring, GIS Applications, and Geology VI. SPIE, Stockholm, Sweden, pp 636606-636611
  • 60. O’Leary DW, Friedman JD, Pohn HA (1976) Lineament, linear, lineation: some proposed new standards for old terms. Geol Soc Am Bull 87(10):1463-1469
  • 61. Omietimi EJ, Chouhan AK, Lenhardt N, Yang R, Bumby AJ (2021) Structural interpretation of the south-western flank of the Anambra Basin (Nigeria) using satellite-derived WGM 2012 gravity data. J Afr Earth Sci 182:104290
  • 62. Ozdemir H, Bird D (2009) Evaluation of morphometric parameters of drainage networks derived from topographic maps and DEM in point of floods. Environ Geol 56(7):1405-1415
  • 63. Patriat M, Ellouz N, Dey Z, Gaulier J-M, Ben Kilani H (2003) The Hammamet, Gabes and Chotts basins (Tunisia): a review of the subsidence history. Sed Geol 156(1-4):241-262
  • 64. Peredo CR, Yutsis V, Martin AJ, Aranda-Gómez JJ (2021) Crustal structure and Curie point depth in central Mexico inferred from the spectral analysis and forward modeling of potential field data. J S Am Earth Sci 112:103565
  • 65. Prima ODA, Echigo A, Yokoyama R, Yoshida T (2006) Supervised landform classification of Northeast Honshu from DEM-derived thematic maps. Geomorphology 78(3-4):373-386
  • 66. Rabus B, Eineder M, Roth A, Bamler R (2003) The shuttle radar topography mission—a new class of digital elevation models acquired by spaceborne radar. ISPRS J Photogramm Remote Sens 57(4):241-262
  • 67. Reuter HI, Hengl T, Gessler P, Soille P, Tomislav H, Hannes IR (2009) Preparation of DEMs for geomorphometric analysis. Developments in Soil Science, Elsevier, Amsterdam, pp 87-120
  • 68. Richert J-P (1971) Mise en évidence de quatre phases tectoniques suc-cessives en Tunisie. Notes Du Service Géologique De Tunisie 34:115-125
  • 69. Saha SK (2022) Remote sensing and geographic information system applications in hydrocarbon exploration: a review. J Indian Soc Remote Sens 50(8):1457-1475
  • 70. Seraj M, Faghih A, Motamedi H, Soleimany B (2020) Major tectonic lineaments influencing the oilfields of the Zagros Fold-Thrust Belt, SW Iran: insights from Integration of Surface and Subsurface Data. J Earth Sci 31(3):596-610
  • 71. Skentos A (2017) Topographic position index based landform analysis of Messaria (Ikaria Island, Greece). Acta Geobalcanica 4(1):7-15
  • 72. Skentos A, Ourania A (2017) Landform analysis using terrain attributes: a gis application on the Island of Ikaria (Aegean Sea, Greece). Ann Valahia Univ Targoviste, Geogr Ser 17(1):90-97
  • 73. Soesilo I, Hoppin RA (1986) Evaluation of digitally processed Landsat imagery and SIR-A imagery for geological analysis of West Java region, Indonesia, Remote sensing for ressources development and environmental management. In: International symposium, pp 173-182
  • 74. Solano-Acosta JD, Soesoo A, Hints R (2023) New insights of the crustal structure across Estonia using satellite potential fields derived from WGM-2012 gravity data and EMAG2v3 magnetic data. Tectonophysics 846:229656
  • 75. Stavrev PY (1997) Euler deconvolution using differential similarity transformations of gravity or magnetic anomalies. Geophys Prospect 45(2):207-246
  • 76. Tachikawa T, Kaku M, Iwasaki A, Gesch D, Oimoen M, Zhang Z, Danielson J, Krieger T, Curtis B, Haase J, Abrams M, Crippen R, Carabajal C (2011) ASTER global digital elevation model version 2—summary of validation results, NASA Land Processes Distributed Active Archive Center and the Joint Japan-US ASTER Science Team
  • 77. Touati MA (1985) Etude géologique et géophysique de la concession de Sidi el Itayem en Tunisie orientale—Sahel de Sfax: Histoire géologique du bassin et évolution de la fracturation et des structures du Crétacé au Plio-Quaternaire. These 3eme Cycle, Univer-sité Paris VI Paris
  • 78. Troiani F, Della Seta M (2008) The use of the Stream Length-Gradient index in morphotectonic analysis of small catchments: a case study from Central Italy. Geomorphology 102(1):159-168
  • 79. van Zyl JJ (2001) The Shuttle Radar Topography Mission (SRTM): a breakthrough in remote sensing of topography. Acta Astronaut 48(5-12):559-565
  • 80. Villalta Echeverria MDP, Viňa Ortega AG, Larreta E, Romero Crespo P, Mulas M (2022) Lineament extraction from digital Terrain derivate model: a case study in the Girón-Santa Isabel Basin, South Ecuador. Remote Sens 14(21):5400
  • 81. Wilson JP, Bishop MP (2013) 3.7 Geomorphometry. In: Shroder JF (ed) Treatise on geomorphology. Academic Press, San Diego, pp 162-186
  • 82. Wilson JP, Gallant JC (2000) Terrain analysis: principles and applications. Wiley, New York
  • 83. Yan Z, Zhang H, Fan X, Du X (2015) Geomorphic indices of rivers and drainage in China’s Longmen Shan Fault zone and their implications for regional tectonic activity. Geodin Acta 27(1):48-59
  • 84. Yang L, Meng X, Zhang X (2011) SRTM DEM and its application advances. Int J Remote Sens 32(14):3875-3896
  • 85. Yatabe S, Howarth PH (1984) Lineament enhancement and interpretation in northern Ontario from airborne multispectral scanner data. In: Proceedings of the international symposium on remote sensing, 3d thematic conference, remote sensing for exploration geology, pp 1-8
  • 86. Zouaghi T, Bédir M, Melki F, Gabtni H, Gharsalli R, Bessioud A, Zargouni F (2011) Neogene sediment deformations and tectonic features of northeastern Tunisia: evidence for paleoseismicity. Arab J Geosci 4(7-8):1301-1314
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-dd268d37-763d-4980-8ce3-05428e259151
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