首页> 外文会议>2011 IEEE Symposium on Underwater Technology and Workshop on Scientific Use of Submarine Cables and Related Technologies >Next RD of measurement method of offshore minerals using the low-frequency acoustic Mills-cross transmission and receiving system ∼ multibeam sub-bottom profiling method and 'Natsushima' cruise experiment ∼
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Next RD of measurement method of offshore minerals using the low-frequency acoustic Mills-cross transmission and receiving system ∼ multibeam sub-bottom profiling method and 'Natsushima' cruise experiment ∼

机译:下一步使用低频声学Mills交叉发射和接收系统测量近海矿物的方法〜多波束亚底轮廓法和“ Natsushima”巡航实验〜

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This paper discusses new approach about a new sub-bottom-profiling method for the precise measurement of the mineral source layer which exists under the hydrothermal deposits. In Japan, the seafloor hydrothermal deposits in domestic exclusive economic zone (EEZ) have attracted a lot of attention in recent years because it contains much offshore minerals under them. The technique which can measure the ore reserve of offshore minerals of seafloor hydrothermal deposits accurately and effectively above the seafloor is desired. To realize these technologies, authors perform a research and development of the exploration method to measure sub-bottom structure and the seafloor mineral distribution under the seafloor hydrothermal deposit by the high resolution. For this purpose, it is most preferable that underwater cruising platform such as AUV performs a more accurate sub bottom profiling in the order of one meter. To realize these aims, authors propose and plan to develop the method of the acoustic transmission and receiving system which adopt the Mills-cross method while maintaining a low water altitude by installing the low frequency acoustic source in AUV. We developed the low frequency acoustic source at the feasibility study in 2009. And we succeeded to develop the highly-accurate sub-bottom profiling method and showed the feasibility of this measurement method. Based on these results, authors conducted a cruise experiment in the vicinity area of Iheya knoll in Okinawa trough by the research vessel "Natsushima" of JAMSTEC in February 2011. There were a lot of seafloor hydrothermal deposits in that area. In this experiment, authors installed our prototype acoustic source in the experimental towing vehicle "Deep-Tow" for the deep water exploration. And we performed data acquisition of the sub-bottom profiling under seafloor of the actual seafloor hydrothermal deposit at a 100m altitude from the seafloor. This cruise was an observation th--at verifies the practicality of a new sub-bottom profiling technology that has high resolution in a low altitude of 100m from the sea floor. Authors'' group succeeded to acquire the data of the layer of the mineral source under an actual hydrothermal deposit by this experiment. In this paper, authors show the plans, conditions of our cruise test, and display the proposed approach of new sub-bottom profiling method.
机译:本文讨论了一种新的方法,该方法用于精确测量热液矿床下存在的矿物源层。在日本,近年来,国内专属经济区(EEZ)的海底热液沉积物吸引了很多关注,因为其中蕴藏着大量的近海矿物。期望能够准确有效地测量海底热液沉积物的近海矿物的矿石储量的技术。为了实现这些技术,作者对勘探方法进行了研究和开发,以高分辨率测量海底热液沉积物的亚底部结构和海底矿物分布。为此,最优选的是,水下巡航平台(例如AUV)执行更精确的水下底部轮廓分析(大约1米)。为了实现这些目标,作者提出并计划开发一种通过在AUV中安装低频声源来在保持低水位的同时采用Mills-cross方法的声音发送和接收系统的方法。在2009年的可行性研究中,我们开发了低频声源。并成功开发了高精度的亚底轮廓分析方法,并证明了这种测量方法的可行性。基于这些结果,作者于2011年2月在JAMSTEC的“ Natsushima”号研究船在冲绳海槽Iheya丘陵附近进行了一次巡航实验。该区域有大量的海底热液沉积物。在该实验中,作者将我们的原型声源安装在用于深水勘探的实验拖挂车“ Deep-Tow”中。然后,我们对距海底100m高度的实际海底热液沉积物的海底下的海底剖面进行了数据采集。这次巡游是一次观察 -- at验证了一种新的亚底轮廓分析技术的实用性,该技术在距海床100m的低空具有高分辨率。作者小组成功地通过该实验获得了在实际热液沉积下的矿物源层的数据。在本文中,作者展示了我们的巡航测试的计划,条件,并展示了新的亚底轮廓分析方法的建议方法。

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