Uplift Quantification and Erosion Rate Estimation in Northwestern Tunisia from Topographic and Lithologic Data

H. Saadouni, R. Alouani
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Abstract

Digital elevation modeling (DEM) was used to determine key morphological features such as hypsometry, slopes and topographic evolution in correlation with tectonic regimes and erosion mechanisms. This contribution discusses the tectonic model of northern Tunisia, which since 1977 has been described by geologists as an allochthonous unity domain of the Serravallian-Tortonian. This study presents new data from the erosion rate calculation following the establishment of these units and then proposes another view on regional tectonics. Therefore, the example used of Oued Sedjnene gives a rising rate of the order of 0.01 mm/year, almost equivalent to the results found in surrounding medeterranean belt (ex. Italy and Turkey). The structure and geomorphology of northern Tunisia is a result of folding of Cenozoic basin. However located tangential structure are related to transcurrent faults and not overthrust structure
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基于地形和岩性资料的突尼西亚西北部隆升量化和侵蚀速率估算
利用数字高程模型(DEM)确定了与构造制度和侵蚀机制相关的地形特征,如斜坡、坡度和地形演变。这篇文章讨论了突尼斯北部的构造模型,自1977年以来,该模型一直被地质学家描述为塞拉瓦里亚-托尔顿构造的异域统一域。本研究提出了这些单元建立后的侵蚀速率计算的新数据,并提出了区域构造的另一种观点。因此,Oued Sedjnene的例子给出了0.01毫米/年的上升速度,几乎与周围地中海带(如意大利和土耳其)的结果相当。突尼斯北部的构造和地貌是新生代盆地褶皱作用的结果。切向构造与逆冲构造无关,与逆冲构造无关
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