首页> 外文OA文献 >IMAGING CONTINENTAL SHELF SHALLOW STRATIGRAPHY BY USING DIFFERENT HIGH-RESOLUTION SEISMIC SOURCES: AN EXAMPLE FROM THE CALABRO-TYRRHENIAN MARGIN (MEDITERRANEAN SEA)
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IMAGING CONTINENTAL SHELF SHALLOW STRATIGRAPHY BY USING DIFFERENT HIGH-RESOLUTION SEISMIC SOURCES: AN EXAMPLE FROM THE CALABRO-TYRRHENIAN MARGIN (MEDITERRANEAN SEA)

机译:通过使用不同的高分辨率地震源对陆架浅层地层进行成像:以卡拉布-蒂拉尼边缘(地中海)为例

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摘要

High-resolution seismic reflection profiles of the Calabro-Tyrrhenian continental shelf were collected using different seismic sources (Sub-Bottom Profiler, Uniboom, Sparker 0.5-1-4.5 kJ). Noticeable differences and results were obtained both from a geophysical and geological-interpretative point of view. The availability of different sources permitted the definition of the most suitable seismostratigraphic characterization in terms of resolution, penetration and acoustic facies. Very high resolution stratigraphy was defined through profiles produced by different seismic systems used in parallel. This permitted the application of sequence-stratigraphy concepts with the reconstruction of a thick postglacial depositional sequence, formed by a transgressive and a high-stand systems tract. The thickness distribution of postglacial deposits reveals that the main depocenter (55-65 m) is located offshore of the Coastal Range, along a stretch of coast supplied by several small and seasonal streams ("fiumare") and characterized by the lack of a coastal plain. This suggests the greater efficiency of sediment supply and bypass in this area relatively to sectors located offshore of the main rivers. The transgressive systems tract, usually thin or nearly absent, is particularly well developed (up to 33 m) and is composed of up to three parasequences with a retrogradational stacking pattern. The high-stand systems tract, up to 30 m thick, is made up of two parasequences and has a quite regular geometry and acoustic facies.
机译:使用不同的地震源(Sub-Bottom Profiler,Uniboom,Sparker 0.5-1-4.5 kJ)收集了卡拉布罗-第勒尼尼亚大陆架的高分辨率地震反射剖面。从地球物理和地质解释的观点来看,都获得了明显的差异和结果。不同来源的可用性使得可以根据分辨率,穿透力和声相来定义最合适的地震地层特征。通过并行使用的不同地震系统产生的剖面来定义非常高分辨率的地层。这使得层序地层学概念得以应用,重建了由海侵和高架系统道形成的厚厚的冰川后沉积层序。冰川后沉积物的厚度分布表明,主要沉积中心(55-65 m)位于沿海山脉的海上,沿着由少量季节性水流(“ fiumare”)提供的一段海岸,特点是缺乏沿海地区。普通这表明相对于主要河流离岸的区域,该地区的泥沙供应和旁路效率更高。海侵系统道通常稀疏或几乎不存在,特别发达(达33 m),由多达三个副序列组成,具有逆行堆积模式。高位系统道的厚度最大为30 m,由两个副序列组成,并且具有相当规则的几何形状和声学相。

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