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首页> 外文期刊>Deep-Sea Research >Getting the bigger picture: Using precision Remotely Operated Vehicle (ROV) videography to acquire high-definition mosaic images of newly discovered hydrothermal vents in the Southern Ocean
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Getting the bigger picture: Using precision Remotely Operated Vehicle (ROV) videography to acquire high-definition mosaic images of newly discovered hydrothermal vents in the Southern Ocean

机译:获得更大的图像:使用精密的遥控车辆(ROV)摄影技术获取南大洋新发现的热液喷口的高清马赛克图像

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摘要

Direct visual observations from submersible vehicles at hydrothermal vents typically only reveal a fraction of the vent environment at any one time. We describe the use of precision Remotely Operated Vehicle (ROV) videography to produce extensive mosaic images of hydrothermal vent chimneys and surrounding seafloor areas (c. 250 m~2), with sufficient resolution to determine distributions of macro-and megafauna. Doppler velocity log navigation (DVLNAV) was used to follow overlapping vertical survey lines in a fixed plane facing a vent chimney, while acquiring high-definition video imagery using a forward-looking camera. The DVLNAV also enabled the vehicle to follow overlapping horizontal survey lines while acquiring seafloor imagery from a downward-looking video camera and mapping variations in seawater temperature. Digital stills images extracted from video were used to compile high-resolution composite views of the surveyed areas. Applying these image acquisition techniques at vent fields on the East Scotia Ridge, Southern Ocean, revealed consistent patterns of faunal zonation around vent sources, variations in proportions of faunal assemblage types on different faces of a vent chimney, and differences in proportions of faunal assemblages between two different vent fields. The technique can therefore be used to determine the composition and spatial distribution of fauna across complex areas of topography, such as vent fields, where mosaic images of vertical structures cannot currently be acquired using other platforms such as autonomous underwater vehicles (AUVs). These image acquisition techniques, demonstrated here in the first ROV dives at newly discovered vent fields, may offer an appropriate technology for rapid baseline studies required by the potential mining of seafloor massive sulfides (SMS).
机译:在热液喷口处,从潜水器进行的直接视觉观察通常只显示出任一时刻喷口环境的一小部分。我们描述了使用精确的遥控车辆(ROV)摄影技术来产生热液喷口烟囱和周围海底区域(约250 m〜2)的大量马赛克图像,并具有足够的分辨率来确定大型动物和大型动物的分布。多普勒速度测井导航(DVLNAV)用于在面向通风口烟囱的固定平面中跟踪重叠的垂直测量线,同时使用前瞻性摄像头获取高清视频图像。 DVLNAV还使车辆能够遵循重叠的水平测量线,同时从向下看的摄像机获取海底图像并绘制海水温度变化图。从视频中提取的数字静态图像用于编译被调查区域的高分辨率合成视图。将这些图像采集技术应用于南大洋东斯科舍脊上的通风孔区域后,揭示了通风孔源周围动物区带的一致模式,通风孔烟囱不同面上的动物组合类型的比例变化以及之间的动物组合比例差异两个不同的排气孔。因此,该技术可用于确定地形复杂区域(例如通风口)上动物区系的组成和空间分布,在这些区域中,当前无法使用其他平台(例如自动水下航行器(AUV))获取垂直结构的镶嵌图像。这些图像采集技术在新发现的通风孔区域的首次ROV潜水中得到了证明,它可能为海底块状硫化物(SMS)的潜在开采所需的快速基线研究提供合适的技术。

著录项

  • 来源
    《Deep-Sea Research》 |2013年第8期|124-135|共12页
  • 作者单位

    Ocean and Earth Science, National Oceanography Centre, Southampton, University of Southampton, Waterfront Campus, Southampton SO14 3ZH, UK;

    Ocean and Earth Science, National Oceanography Centre, Southampton, University of Southampton, Waterfront Campus, Southampton SO14 3ZH, UK;

    Marine Geoscience, Natural Environment Research Council, National Oceanography Centre, Southampton, European Way, Southampton, SO14 3ZH, UK;

    Ocean and Earth Science, National Oceanography Centre, Southampton, University of Southampton, Waterfront Campus, Southampton SO14 3ZH, UK;

    Marine Autonomous and Robotic Systems, National Marine Facilities Sea Systems, Natural Environment Research Council, National Oceanography Centre,Southampton, European Way, Southampton, SO14 3ZH, UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Remotely Operated Vehicle; Hydrothermal vents; Image processing; Faunal distribution; Baseline survey; Seafloor massive sulphides (SMS);

    机译:遥控车;热液喷口;图像处理;动物分布;基线调查;海底块状硫化物(SMS);

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