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The low impact of fish traps on the seabed makes it an eco-friendly fishing technique

机译:鱼陷阱对海底的影响力使其成为一种环保的渔业技术

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Besides understanding the effects of fishing on harvested fish stocks, effects on non-target species, habitats and seafloor integrity also need to be considered. Static fishing gears have often been mentioned as a lower impact fishing alternative to towed gears, although studies examining their actual impact on the seafloor are scarce. In this study, we aimed to describe fish trap movements on the seafloor related to soaking time and trap retrieval. Impacts on the seafloor of lightweight rectangular traps and heavier circular traps were compared. We used 3D video cameras to estimate sweeping motion on the seabed and penetration into the sediment during soaking time. The area and distance swept by each type of trap during retrieval was determined by a camera set up facing the sea bottom. The potential rotation of the traps around the mainline was assessed using an Acoustic Doppler Current Profiler. Results showed that no penetration and almost no movements could be detected during soaking time for either lightweight or heavy commercial traps, even for high tidal coefficient (maximum 6 cm). No rotation could be observed when the tide turned. The swept area covered by a trap during retrieval was low (maximum 2.04 m 2 ) compared to towed fishing gear and other static gear.
机译:除了了解捕鱼对收获的鱼类股票的影响,还需要考虑对非目标物种,栖息地和海底诚信的影响。静态捕鱼齿轮通常被称为拖曳齿轮的较低影响捕鱼替代品,尽管研究其对海底的实际影响是稀缺的。在这项研究中,我们旨在描述与浸泡时间和陷阱检索相关的海底上的鱼陷阱。比较了对轻质矩形陷阱的海底和较重的圆形陷阱的影响。我们使用3D摄像机在浸泡时间内估计海底和穿透到沉积物上的清扫运动。通过检索期间的每种类型的捕集器扫过的区域和距离由面向海底的相机确定。使用声学多普勒电流分析器评估主线周围陷阱的电位旋转。结果表明,对于轻量化或重型商业陷阱,可以在浸泡时间内检测到渗透和几乎没有运动,即使对于高潮汐系数(最大6厘米)。当潮汐转动时,没有旋转。与牵引渔具和其他静齿轮相比,检索期间陷阱覆盖的扫掠区域低(最多2.04米2)。

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