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A GIS Approach Using Morphometric Data Analysis for the Identification of Subsurface Recent Tectonic Activity. Case Study in Quaternary Outcrops—North West of Tunisia

A GIS Approach Using Morphometric Data Analysis for the Identification of Subsurface Recent Tectonic Activity. Case Study in Quaternary Outcrops—North West of Tunisia

作     者:Slimene Sedrette Noamen Rebai Slimene Sedrette;Noamen Rebai

作者机构:Geotechnical Engineering and Georisk Research Laboratory National School of Engineering of Tunis University of Tunis El Manar Tunis Tunisia 

出 版 物:《Journal of Geographic Information System》 (地理信息系统(英文))

年 卷 期:2022年第14卷第1期

页      面:94-112页

学科分类:070801[理学-固体地球物理学] 07[理学] 0708[理学-地球物理学] 

主  题:Morphometry GIS Software Tools Crossing-Data Hydrographic Network Oued Lahmar Subsurface Neotectonic 

摘      要:The combination of structural and lithological data with morphometric indicators in a GIS environment constitutes a methodological approach with high added value to identify neotectonic deformations, in particular in the Quaternary outcrops where faults are generally masked by thick recent sediments. This approach, based on the crossing of multisource data, is used in this work to understand the mechanisms that generate landscape forms in the Quaternary outcrop of Oued Lahmar, which belongs to the northwest of Tunisia. In fact, the databases of various morphometric indicators, extracted from the hydrographic network, have been generated using remote sensing data and open sources applications. This database has been enriched by lithological and tectonic data extracted from the regional geological map, to understand the results of the morphometric analysis. The results obtained provide valuable information on the identification of subsurface activity in Oued Lahmar and large vicinity areas with heterogeneous geomorphic and structural characteristics. Indeed, this study revealed the existence of an E-W subsurface tectonic control covered by the Quaternary sedimentary series not indicated on the geological map of the region. This tectonic direction, which follows most of the magmatic outcrop edge in the region, may allow the intrusion of magma and the rejuvenation of ancient deep faults.

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