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Seabed characterization through a range of high-resolution acoustic systems – a case study offshore Oman

机译:通过一系列高分辨率声学系统表征海床–阿曼海上案例研究

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摘要

This study uses three acoustic instruments (different in their operating frequencies, 13, 3.5, and 6–10 kHz, and deployment type, hull-mounted, surface-towed and deep-towed) to investigate and characterize the acoustic response of seafloor NE of Oman in a frequency-independent manner. High-resolution control was achieved by having selected areas of our acoustic transects ground-truthed by sampling and/or sea-floor photography. On the regional scale, the greatest degree of change in backscatter amplitude was correlated with major changes of seabed morphology and lithology. However, small-scale roughness had the biggest effect on amplitude on the local scale, i.e. within each area of specific seafloor type. The study also shows that seafloor reflection amplitude changes are far more easily detected by deep-towed instrument than by surface-towed or hull-mounted systems. Whilst there are significant changes in bioturbation types and density along the transects, the suite of instruments deployed was not able to pick up the effect of the bioturbation on acoustic signals.
机译:本研究使用三种声学仪器(工作频率分别为13、3.5和6-10 kHz,以及部署类型,船体安装,表面拖曳和深拖不同)来研究和表征海底NE的声学响应。阿曼与频率无关。通过选择采样和/或海底摄影对地面进行实测的声学样带区域,可以实现高分辨率控制。在区域尺度上,反向散射振幅最大程度的变化与海床形态和岩性的重大变化有关。但是,小尺度的粗糙度对局部尺度上的振幅影响最大,即在特定海底类型的每个区域内。这项研究还表明,与通过表面拖曳或安装在船体上的系统相比,用深拖曳的仪器更容易检测到海底反射幅度的变化。尽管沿横断面的生物扰动类型和密度发生了显着变化,但部署的仪器套件无法吸收生物扰动对声学信号的影响。

著录项

  • 来源
    《Marine Geophysical Research》 |2006年第3期|167-180|共14页
  • 作者单位

    Challenger Division for Seafloor Processes National Oceanography Centre University of Southampton Waterfront Campus European Way SO14 3ZH Southampton UK;

    Challenger Division for Seafloor Processes National Oceanography Centre University of Southampton Waterfront Campus European Way SO14 3ZH Southampton UK;

    Challenger Division for Seafloor Processes National Oceanography Centre University of Southampton Waterfront Campus European Way SO14 3ZH Southampton UK;

    Challenger Division for Seafloor Processes National Oceanography Centre University of Southampton Waterfront Campus European Way SO14 3ZH Southampton UK;

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

    3.5 kHz sediment profiler; acoustic characterization; backscatter; bioturbation; deep-tow CHIRP; EM12 multibeam; Oman;

    机译:3.5kHz沉积物剖面仪;声学特性;反向散射;生物扰动;深拖CHIRP;EM12多波束;阿曼;

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