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Multipurpose use of side-scan sonar technology for fisheries science

机译:渔业科学侧扫声纳技术的多用途使用

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摘要

This study illustrates some potential applications of side-scan sonar to explain issues related to fisheries science. Side-scan sonar enabled identification of the footprint of different trawl types. It showed that a twin trawl sweeps a 30% greater area than a traditional trawl and that a semipelagic trawl door has more limited impact than a traditional bottom otter trawl. The side-scan sonar enabled detection and characterization of the interaction of trawl gear with the seafloor. It demonstrated the cod end is floating above the sea bottom during the tow, while the doors and clumps, sweeps and bridles have the most damaging effect on the seafloor. Side-scan sonar was used to assess the interaction between active and passive gear and between trawls and pipelines. It has been able to detect illegal fishing activity in marine protected areas and has been a valuable tool to resolve disputes between different sectors. Side-scan sonar was finally tested as a suitable tool for fish school detection and counting. Side-scan sonar emerged as a flexible tool to tackle rapidly a number of issues related to fishing impact, technology, and biology.
机译:本研究说明了侧扫声纳的一些潜在应用,以解释与渔业科学有关的问题。侧扫声卡能够识别不同拖网类型的占地面积。结果表明,双拖网比传统拖网扫过30%的面积,并且半拖网门的冲击力比传统的底部水獭拖拉更多。侧扫声纳能够检测和表征拖网齿轮与海底的相互作用。它展示了鳕鱼结束在牵引期间漂浮在海底上方,而门和丛,扫掠和缰绳对海底有最大的损害效果。侧扫声卡用于评估主动和被动齿轮之间以及拖网和管道之间的相互作用。它能够检测在海洋保护区的非法捕捞活动,并成为解决不同部门之间争议的宝贵工具。侧面扫描声纳最终被视为鱼学校检测和计数的合适工具。 Side-Scan Sonar成为一种灵活的工具,可以快速解决与钓鱼影响,技术和生物学相关的许多问题。

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