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3D reconstruction of a shallow archaeological site from high resolution acoustic imagery: a case study (abstract of paper presented at AGU Fall Meeting, San Francisco, 5-9 Dec 2005)

机译:从高分辨率声学图像三维重建浅层考古遗址:案例研究(2005年12月5日至9日在旧金山举行的aGU秋季会议上提交的论文摘要)

摘要

High resolution acoustic surveying for buried objects in the shallow waters of the inter-tidal to sub-tidal zone is a major challenge to many sectors of the marine surveying community. This is a consequence of a number of issues such as the relationship between water depth and acoustic acquisition geometry; problems of vessel induced bubble clouds reducing the signal-to-noise (SNR) ratio; and the necessity of high spatial survey accuracy in three-dimensions. These challenges are particularly acute for the marine archaeological community, who are frequently required to non-destructively investigate shallow-water ( 5 m) sites.This paper addresses these challenges and demonstrates the potential of imaging buried objects in extremely shallow environments by describing a seamless marine archaeological and geophysical investigation of a buried shipwreck: Henry V’s ‘great flagship’, the Grace Dieu (1418). The site, located in the Hamble River (UK), is typically covered by 2-5 m of water, and is partially buried within muddy inter-tidal sediments. At exceptionally low tides, during the spring equinox, a few of the marginal timbers are exposed.The marine survey utilised three different deployment methods of a Chirp system: two 2D Chirp systems, each emitting different frequencies and accompanied by different navigational systems (DGPS versus RTK), and a 3D Chirp system with RTK positioning capability. In all cases, the source was towed over the site using diver power. Close survey line spacing, accurate navigation and decimetre scale vertical and horizontal resolution acoustic data enabled the construction of a pseudo and full 3D image of this buried wreck site. This has been calibrated against known archaeological site investigation data and an RTK-GPS terrestrial survey.This data has identified the true plan form and dimensions of the remaining segments of the vessel, supporting the assertion that it was the most significant naval design for over two centuries. It has also been possible to identify the presence of a horizon of incoherent timbers associated with the scuttling of the vessel.
机译:对于潮间带至潮间带浅水区的埋藏物体,高分辨率声波测量是海洋测量界许多部门面临的主要挑战。这是许多问题的结果,例如水深和声学采集几何形状之间的关系。容器引起的气泡云降低信噪比的问题;以及三维空间测量精度高的必要性。这些挑战对于海洋考古界来说尤为严峻,他们经常需要对非水深(<5 m)地点进行非破坏性研究。本文针对这些挑战进行了说明,并说明了在极浅环境中对掩埋物体成像的潜力。对沉船沉没的无缝海洋考古和地球物理研究:亨利五世的“伟大旗舰”格蕾丝·迪厄(Grace Dieu)(1418年)。该场址位于英国的海勃河(Hamble River),通常被2-5 m的水所覆盖,部分埋在潮间带泥泞的沉积物中。在春季低潮时,潮汐异常低潮时,一些边缘木材暴露在外。海洋勘测使用了Chirp系统的三种不同部署方法:两个2D Chirp系统,每个系统发出不同的频率并伴有不同的导航系统(DGPS与RTK)和具有RTK定位功能的3D Chirp系统。在所有情况下,都使用潜水员的动力将放射源拖曳到现场。紧密的测量线间距,精确的导航和分米制的垂直和水平分辨率声学数据,可以构建此沉船残骸站点的伪全图3D图像。已根据已知的考古现场调查数据和RTK-GPS陆地调查进行了校准,该数据已确定了该船其余部分的真实计划形式和尺寸,支持了以下主张:这是两次以上最重要的海军设计个世纪。也有可能确定与船只拆解有关的不连贯木材的存在。

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