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Submerged Archaeological Resources: Sound, Software and Three Inch Pipes - A Recipe for Finding Submerged Prehistoric Archaeological Sites?

机译:淹没的考古资源:声音,软件和三英寸管道-寻找淹没的史前考古遗址的食谱?

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Objectives/Scope: 1. Review the effectiveness of existing technology for identifying and characterizing submerged and buried prehistoric archaeological sites.2. Critique and suggest changes to existing technology to improve the effectiveness for the identification and characterization of submerged prehistoric archaeological sites.3. Examine the "why" this is important to offshore technology regulation and management. Methods, Procedures, Process: The process can easily be paraphrased as "sound, software, and three inch pipes" - the sound being the pulse from sonar or sub-bottom instruments, the software being the methods by which those pulses are processed and display, and the three-inch pipes, of course, denoting the coring tubes used to sample targets identified in using sound and software. In fairness to the methods discussed herein, their application has been, at best, uneven. The use of the first two technologies - sound/acoustic and postprocessing software programs have been in regular use by geophysical contractors. The latter technology - sediment coring - has been utilized far less. Results, Observations, Conclusions: How effective has this methodology proven to be over the past thirty years? That is open to some debate and this paper will examine some reasons why this is so and suggest some possible alternatives. The overarching goal of this paper is to push beyond this methodology to potentially more effective technologies or at least improved usage of the current technology. Novel/Additive Information: Submerged prehistoric archaeological sites are "hard problems" in terms of their discovery and characterization. Compared to submerged historic archaeological sites - primarily shipwrecks - those are "easy." This comparison of the use and effectiveness of technology is novel and additive.
机译:目标/范围:1.审查确定和表征淹没和埋藏的史前考古遗址的现有技术的有效性。2。批判并建议对现有技术进行更改,以提高对淹没的史前考古遗址进行识别和表征的有效性。3。检查“为什么”这对海上技术法规和管理很重要。方法,过程,过程:该过程可以很容易地解释为“声音,软件和三英寸管道”-声音是声纳或下层仪器产生的脉冲,软件是处理和显示这些脉冲的方法,以及三英寸的管道,当然是指用来对使用声音和软件识别出的目标进行采样的取芯管。为公平起见,本文所讨论的方法充其量是不均衡的。地球物理承包商经常使用前两种技术-声音/声音和后处理软件程序。后一种技术-沉积物取芯-的利用已经很少了。结果,观察结果,结论:在过去的30年中,这种方法的有效性如何?这有待进行辩论,本文将探讨为什么会如此,并提出一些可能的替代方案。本文的总体目标是超越这种方法论,发展潜在更有效的技术或至少改善当前技术的使用。新颖/附加信息:就其发现和特征而言,淹没的史前考古遗址是“难题”。与沉没的历史考古遗址(主要是沉船)相比,这些都是“容易的”。技术使用和有效性的这种比较是新颖和可加的。

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