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Collaborative Research: Dynamics of eruptive plumes above a submarine arc volcano

Collaborative Research: Dynamics of eruptive plumes above a submarine arc volcano
合作研究:海底弧火山上方喷发羽流的动力学
批准号:
1232431
负责人:
Joseph Resing
金额:
$3.14万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-09-01 至 2014-08-31

项目摘要

项目成果

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中文摘要
翻译
最大限度地利用和开发新工具来探索海洋的能力,特别是在水柱中发生的行为和特征,对于美国海洋学研究能力以及提高对海上平台和基础设施投资的有效性都很重要。本研究探讨了扩大最近安装在大学国家海洋学实验室系统(UNOLS)船队的一些船舶上的多波束声纳系统的能力的可能性。 该研究将包括分析在罗塔1号(Rota 1)勘探巡航中偶然收集的中层水声纳探测结果,罗塔1号是西太平洋一座活跃喷发的海底火山,当时调查人员正在研究火山的喷发动力学和火山沉积物。在巡航过程中,很明显,新的声纳能够识别火山喷发产生的火山气体,这些气体被表达为来自火山口的气泡。 研究将包括检查和处理新的声纳数据,以尝试提取喷发羽流的高度、强度和方向,以及它们如何随时间变化。它还将把中层水羽流结果与为最初供资的项目收集的视觉和化学数据进行比较,以便可以用同时在该地区作业的遥控潜水器进行的补充物理测量来校准结果。这项新资助的工作的一个主要目标将是衡量中层水多波束气泡列车数据集的有用性,并找出从这些数据中可以学到什么,以了解undesea火山活动。如果成功,同样的技术可以用于更好地了解大陆边的低温渗漏和与海洋天然气水合物矿床有关的气泡串。这项工作的更广泛影响包括通过开发联合国海洋法处船只上多波束声纳的新的中层水成像能力,发展新的科学基础设施,以及培训研究生。
英文摘要
The ability to maximize usage and develop new tools for exploring the ocean, in particular the behavior and features that occur within the water column is important both for US oceanographic research capacity as well as increasing the effectiveness of investment in sea-going platforms and infrastructure. This research explores the possibility of expanding the capability of multi-beam sonar systems recently installed on some ships in the University National Oceanographic Laboratory System (UNOLS) fleet. The research will consist of analyzing mid-water sonar soundings serendipitiously collected on a cruise of exploration to Rota 1, an actively erupting undersea volcano in the western Pacific Ocean, while investigators were studying the eruption dynamics and volcanological deposits from the volcano. During the cruise, it became evident that the new sonar ws able to inage volcanic gasses that were emmanating from the eruption and being expressed as trains of bubbles coming from the volcanic vent. Research will include examination and processing of the new sonar data to try and extract eruption plume height, intensity, and direction as well as how these change with time. It will also compare the mid-water plume results to visual and chemical data collected for purposes of the originally funded project so that the results can be calibrated with complementary physical measurements taken by remotely controlled submarine vehicles that were simultaneously operating in the area. A major goal of this newly funded work will be to gauge the usefulness of mid-water multibeam bubble train datasets and find out what can be learned from these data in terms of understanding undesea volcanic activity. If successful, the same techniques could be applied to better understand low temperature seeps on continental margins and bubble trains associated with marine gas hydrate deposits. Broader impacts of the work include the development of new infrastructure for science by developing a new mid-water imaging capability for multi-beam sonar on UNOLS ships and graduate student training.
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  • 项目类别:
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  • 资助金额:
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  • 项目类别:
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  • 批准号:
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  • 项目类别:
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  • 资助金额:
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  • 财政年份:
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  • 负责人:
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海外基金
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  • 资助金额:
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  • 负责人:
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  • 依托单位:
Cell Research
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