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Imaging a medieval shipwreck with the new PingPong 3D marine reflection seismic system

机译:与新的Pingpong 3D海洋反射地震系统成像中世纪沉船

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We present a new three-dimensional (3D) marine seismic data acquisition system, named PingPong, developed for archaeological prospection in shallow water. Prospection targets for the system are ancient harbour sites and sedimented remains of shipwrecks. The prospection of such targets often means working at the transition from land to water, in areas of only a few meters of water depth and hardly accessible waters. An acquisition system for such environments needs to meet specific demands, especially low draught and marginal weight besides the requirements of archaeological prospection, meaning decimetre resolution and 3D imaging capabilities, together with fast multichannel acquisition to be able to cover large areas. We explain the properties of the PingPong system and show its imaging capabilities using the case study of a sedimented medieval shipwreck. The study area is located at the innermost part of the Baltic fjord Schlei, Germany. In 2014, divers found a wreck in this area, mostly covered by mud. Findings and two timbers, dated by dendrochronology, indicated that the wreck is a Scandinavian transport ship dating to the middle of the twelfth century and related to Schleswig, which is located 2 km northwest of the study area. We show that the PingPong system is able to image the major remains of the wooden wreck at the seafloor and underneath. The acquired seismic datacube has a resolution of 0.15 m. It shows a number of distinct reflections that can clearly be assigned to the shipwreck, helping to understand the overall condition of the wreck. The reflections originate from one half the ship's hull, which is tilted to the side. The reflections concentrate in the first metre below the seafloor and correlate well with the results from the diving prospection.
机译:我们提出了一种新的三维(3D)海洋地震数据采集系统,名为Pingpong,为浅水中的考古展望开发。该系统的勘探目标是古代港口和沉积的沉积遗迹。这种目标的借鉴通常意味着在从地上到水的过渡,在仅几米的水深和难以进入的水域的区域。除了考古学借鉴的要求外,还需要满足特定需求,特别是低于考古学防盗的要求,尤其是低曲目和边际重量,尤其是减去多通道采集能够覆盖大面积。我们解释了Pingpong系统的属性,并使用沉积的中世纪海难的案例研究显示其成像能力。该研究区位于德国波罗的海峡湾史利的最内部。 2014年,潜水员发现了这一领域的残骸​​,主要由泥土覆盖。调查结果和两个木材由Dendrochronology约会,表明,残骸是北京北京市中部的斯堪的纳维亚运输船,与Schleswig有关,位于学习区的西北部2公里。我们表明平庞系统能够在海底和下面的遗骸中象木质残骸的主要遗体。所获得的地震Datacube分辨率为0.15米。它显示了许多可以清楚地分配给沉船的不同反射,有助于了解残骸的整体条件。反射来自船船体的一半,这倾斜到侧面。反射集中在海底下方的第一米中,并与潜水展望的结果良好相关。

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