DTU Aqua, Technical University of Denmark, Hirtshals, Denmark.
SINTEF Fisheries and Aquaculture, Fishing Gear Technology, Hirtshals, Denmark.
PLoS One. 2014 Aug 8;9(8):e102168. doi: 10.1371/journal.pone.0102168. eCollection 2014.
Trawlers involved in the Antarctic krill (Euphausia superba) fishery use different trawl designs, and very little is known about the size selectivity of the various gears. Size selectivity quantifies a given trawl's ability to catch different sizes of a harvested entity, and this information is crucial for the management of a sustainable fishery. We established a morphological description of krill and used it in a mathematical model (FISHSELECT) to predict the selective potential of diamond meshes measuring 5-40 mm with mesh opening angles (oa) ranging from 10 to 90°. We expected the majority of krill to encounter the trawl netting in random orientations due to high towing speeds and the assumed swimming capabilities of krill. However, our results indicated that size selectivity of krill is a well-defined process in which individuals encounter meshes at an optimal orientation for escapement. The simulation-based results were supported by data from experimental trawl hauls and underwater video images of the mesh geometry during fishing. Herein we present predictions for the size selectivity of a range of netting configurations relevant to the krill fishery. The methods developed and results described are important tools for selecting optimal trawl designs for krill fishing.
拖网渔船在捕捞南极磷虾(Euphausia superba)时使用不同的拖网设计,而对于各种渔具的尺寸选择性知之甚少。尺寸选择性定量描述了特定拖网捕获收获物不同大小个体的能力,这对于可持续渔业的管理至关重要。我们对磷虾进行了形态描述,并将其用于数学模型(FISHSELECT)中,以预测网目尺寸为 5-40 毫米、网目开口角度(oa)为 10 至 90°的菱形网片的潜在选择性。由于拖曳速度高以及磷虾的假定游泳能力,我们预计大多数磷虾会以随机方向进入拖网。然而,我们的结果表明,磷虾的尺寸选择性是一个明确的过程,个体在逃离的最佳方向上遇到网片。基于模拟的结果得到了实验拖网捕捞数据和捕鱼过程中水下网片几何形状的视频图像的支持。在此,我们提出了一系列与磷虾渔业相关的网具配置的尺寸选择性预测。所开发的方法和描述的结果是为磷虾捕捞选择最佳拖网设计的重要工具。