...
首页> 外文期刊>Fisheries science >Trawling experiment in a circular water tank to assess the effects of towing speed, light intensity, and mesh shape on active escape of undersized fish
【24h】

Trawling experiment in a circular water tank to assess the effects of towing speed, light intensity, and mesh shape on active escape of undersized fish

机译:在圆形水箱中进行拖网实验,以评估拖曳速度,光强度和网眼形状对超小型鱼主动逃逸的影响

获取原文

摘要

To assess the effect of towing speed and light intensity on the active escape of undersized fish through diamond and square mesh panels, a trawling experiment was simulated in a circular water tank. Juveniles of Japanese dace Tribolodon hakonensis (13-cm length class) were used as experimental fish. They were forced to swim inside a closed framed net with either diamond or square mesh (65-mm mesh size) that was moved using a speed-controllable motor. A submersible infrared CCD camera was used to observe and record the behavior of fish inside the net when it passed in front of the camera. Results indicated significant effects of towing speeds and light intensities (P<0.05) on the escape of fish through the diamond and square meshes. Increase in light intensity enhanced the ability of fish to escape at lower towing speeds. At higher towing speeds, few fish could escape under light conditions. A strong negative correlation was found between towing speed and the frequency of fish escape (diamond mesh R2=0.99, square mesh R2=0.96). There was no significant difference, between the numbers of fish escaping through the diamond and square meshes. These results suggest that the square-mesh panel may not be effective in the trawl cod end under dark or very low light intensity at high towing speed.
机译:为了评估拖曳速度和光照强度对超大尺寸鱼通过菱形和方形网状板主动逃逸的影响,在圆形水箱中模拟了拖网实验。日本da Tribolodon hakonensis(13厘米长)的幼鱼被用作实验鱼。他们被迫在带有钻石或方形网眼(65毫米网眼)的封闭式框架网中游泳,并使用速度可控的马达移动它们。使用潜水式红外CCD摄像机观察并记录网中鱼通过摄像机前的行为。结果表明,拖曳速度和光强度对鱼类通过菱形和方形网的逃逸具有显着影响(P <0.05)。光照强度的增加增强了鱼以较低的拖曳速度逃逸的能力。在较高的拖曳速度下,很少的鱼在光照条件下可以逃脱。发现拖曳速度与鱼逃逸频率之间存在很强的负相关性(菱形网格R2 = 0.99,方形网格R2 = 0.96)。通过钻石和方网逃逸的鱼的数量之间没有显着差异。这些结果表明,在高拖曳速度下,在暗或非常低的光强度下,方格网在拖网鳕鱼端可能无效。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号