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Identifying sedimentary structures and spatial distribution of tsunami deposits with GPR - examples from Spain and Greece

机译:利用GPR识别海啸矿床的沉积结构和空间分布-以西班牙和希腊为例

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Shallow drilling in coastal areas like southern Spain and different parts of Greece (Corinth region and Argolis Gulf) proved evidence for tsunamis. Sedimentary analyses were conducted to identify tsunamigenic deposits, but did not reveal sedimentary structures or spatial distribution of tsunamites in a regional scale. Since drilling is time-intensive and expensive (depending on extend), this method can by far not cover an entire coastal area. On the other hand, distribution and preservation of tsunamigenic deposits seems to be highly variable. We used ground penetrating radar (GPR) in combination with electrical resistivity tomography (ERT) measurements and sedimentological research methods for tsunamite detection in Greece and Spain. The combination of these three methods enables an improved interpretation of the results and 3D visualization, which give clues for tsunamite distribution and sediment architecture. GPR data indicate unconformable thicknesses of tsunamigenic beddings, channel-like structures (back wash deposits), in some extent chaotic erosion basement, as well as abrasion-scours in various places, and boulder accumulation inside the deposits. In the future, GPR and other shallow geophysical methods will be used to detect run-up distances and typical sediment structures.
机译:在西班牙南部和希腊不同地区(科林斯地区和阿尔戈利斯湾)等沿海地区进行的浅层钻探证明存在海啸的迹象。进行了沉积分析,以确定海啸成因的沉积物,但没有揭示区域范围内海啸的沉积结构或空间分布。由于钻探是费时且昂贵的(取决于扩展时间),因此该方法可能无法覆盖整个沿海地区。另一方面,海啸成因的分布和保存似乎变化很大。在希腊和西班牙,我们将探地雷达(GPR)与电阻层析成像(ERT)测量和沉积学研究方法结合使用来检测海啸。这三种方法的结合可以改进结果的解释和3D可视化,从而为海啸石分布和沉积物构造提供线索。 GPR数据表明,海啸床层厚度,通道状结构(反洗沉积物),在一定程度上混乱的侵蚀基底,以及各个地方的磨擦性和沉积物内部的巨石堆积厚度不一致。将来,将使用GPR和其他浅层地球物理方法来检测爬升距离和典型的沉积物结构。

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