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Investigation of seabed fishing impacts on benthic structure using multi-beam sonar, sidescan sonar, and video

机译:用多梁声纳,旁观梁岩石和视频对底底捕捞影响的研究

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摘要

Long, linear furrows of lengths up to several kilometres were observed during a recent high-resolution, multi-beam bathymetry survey of Jeffreys Ledge, a prominent fishing ground in the Gulf of Maine located about 50 km from Portsmouth, NH, USA. These features, which have a relief of only a few centimetres, are presumed to be caused either directly by dredging gear used in the area for scallop and clam fisheries, or indirectly through the dragging of boulders by bottom gear. Extraction of these features with very small vertical expression from a noisy data set, including several instrumental artefacts, presented a number of challenges. To enhance the detection and identification of the features, data artefacts were identified and removed selectively using spatial frequency filtering. Verification of the presence of the features was carried out with repeated multi-beam bathymetry surveys and sidescan sonar surveys. Seabed marks that were clearly detected on multi-beam and sidescan sonar records were not discernible on a subsequent video survey. The inability to see the seabed marks with video may be related to their age. The fact that with time, the textural contrasts discernible by video imagery are lost has important ramifications for the appropriateness of methodologies for quantifying gear impact. The results imply that detailed investigations of seabed impact are best done with a suite of survey tools (multi-beam bathymetry, sidescan sonar, and video) and software to integrate the disparate data sets geographically.
机译:在近期高分辨率的高分辨率,多光束沐浴术调查中观察到长度高达几公里的线性沟,这是缅因州湾湾的突出渔场,距离朴茨茅斯,NH,NH,NH,NH,NH。这些特征具有仅限几厘米的浮雕,可以通过扇形和蛤蜊渔业的区域中使用的疏浚齿轮直接引起,或间接通过底部齿轮拖动巨石。这些特征提取具有来自包括几个乐器艺术品的嘈杂数据集非常小的垂直表达式,呈现了许多挑战。为了增强特征的检测和识别,使用空间频率滤波选择和去除数据伪影。通过重复的多光束沐浴疗法调查和侧臂声卡调查进行了对特征存在的验证。在随后的视频调查中,在多梁和SideScan SONAR记录上清楚地检测到的海床标记。无法看到具有视频的海底标记可能与其年龄有关。因此,随着时间的推移,视频图像可辨别的纹理对比丢失对量化齿轮撞击的方法的适当性具有重要的影响。结果意味着对海底影响的详细调查是最好用一套测量工具(多光束沐浴般,侧臂声明和视频)以及在地理上集成不同数据集的软件。

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