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首页> 外文期刊>Marine Geology >Ground penetrating radar fades of inferred tsunami deposits on the shores of the Arabian Sea (Northern Indian Ocean)
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Ground penetrating radar fades of inferred tsunami deposits on the shores of the Arabian Sea (Northern Indian Ocean)

机译:推断为阿拉伯海(北印度洋)海岸海啸沉积物的探地雷达衰减

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摘要

The occurrence of tsunami waves that affected the shores of the Arabian Sea including the Gulf of Oman coastline has been proven by historical reports and sedimentological investigations. The damaging effect of such extensive events should not be underestimated in this region. In our study we present an investigation of coarse- to finegrained, marine tsunami deposits in the vicinity of Fins, Sultanate of Oman, using ground penetrating radar (GPR). The sedimentary setting along the beach section preserves evidence (boulder & block deposits as well as trenching results) for possible high-energy wave impacts. The investigated area's environment is representative of conditions which lead to the best possible GPR data quality: arid conditions, no interference due to electrical power lines, and an elevated study area (-5-10 m a.m.s.l.) which eliminates the low-frequency noise of the ground and the possibility of salt water in the GPR data. 3D visualisation of GPR results from four study areas show e.g. wedging out of sediments and fining inland features, as well as several erosion features at the base of the deposit These findings corroborate the hypothesis of inferred tsunami deposits. Furthermore, the presented GPR investigation technique provides new insights regarding the spatial distribution and internal architecture of (palaeo-) tsunami deposits in comparable tsunami prone regions worldwide.
机译:历史报告和沉积学调查已证明,海啸波影响了包括阿曼湾在内的阿拉伯海沿岸。在这一地区不应低估这种广泛事件的破坏性影响。在我们的研究中,我们使用探地雷达(GPR)对阿曼苏丹国Fins附近的粗粒度至细粒度海啸沉积物进行了调查。沿海滩部分的沉积环境保留了可能的高能波撞击的证据(巨石和块状沉积物以及挖沟结果)。被调查区域的环境代表了可能导致最佳GPR数据质量的条件:干旱条件,无电力线干扰,以及较高的研究区域(-5-10 m amsl),消除了低频噪声GPR数据中的地面和盐水的可能性。来自四个研究领域的GPR结果的3D可视化显示例如从沉积物中挖出并细化内陆特征,以及沉积层底部的一些侵蚀特征。这些发现证实了推断的海啸沉积层的假说。此外,提出的GPR调查技术提供了有关在全球类似海啸易发地区的(古)海啸矿床的空间分布和内部构造的新见解。

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