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首页> 外文期刊>Fisheries Research >Development of a codend concept to improve size selectivity of Nephrops (Nephrops norvegicus) in a multi-species fishery
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Development of a codend concept to improve size selectivity of Nephrops (Nephrops norvegicus) in a multi-species fishery

机译:开发了一种能提高多品种渔业中海螯虾(Nephrops norvegicus)的大小选择性的ivity概念

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Species-specific differences in morphology and minimum landing size will often result in high discard rates in mixed-species fisheries. This is the case in the Danish Nephrops-directed fishery and the aim of this study was to improve the size selectivity of Nephrops without increasing catch below minimum landing size (MLS) of cod (Gadus morhua) and plaice (Pleuronectes platessa). A new codend concept combining square meshes and diamond meshes in a four-panel configuration was developed and tested in the Kattegat and Skagerrak. A 5 m long 70 mm square-mesh panel was inserted in the lower panel of the codend to increase size selectivity of Nephrops while the remaining three panels were made of standard 90 mm diamond-mesh netting to maintain selectivity of plaice and cod. The concept succeeded in significantly (p < 0.0001) increasing L-50 of Nephrops without increasing discards of either plaice or cod. When using the new codend concept, expected numbers of Nephrops below MLS (carapace length = 40 mm) were reduced by approximately 37% but the expected weight of marketable catch was also reduced by 21%.The concept was adjusted and tested in a second experiment so that fishing using the new net configuration would remain commercially viable. This experiment indicated that size selectivity of Nephrops could be adjusted by changing the square-mesh panel but differences in mean selection between the gears were insignificant. We introduce a new analytical approach with increased statistical power to detect differences in selection parameters between different codends
机译:物种特定的形态差异和最小着陆面积通常会导致混合物种渔业的高丢弃率。在丹麦以尼弗罗普斯为导向的渔业中就是这种情况,本研究的目的是提高尼弗罗普斯的大小选择性,而不会增加鳕鱼(ad鱼)和(Pleuronectes platesa)的最小着陆尺寸(MLS)以下的渔获量。在Kattegat和Skagerrak中开发并测试了一种新的编码对象概念,该概念在四面板配置中结合了正方形网格和菱形网格。将一块5 m长的70 mm方网面板插入到nd的下部面板中,以增加Nephrops的尺寸选择性,而其余三个面板由标准90 mm菱形网制成,以保持maintain和鳕鱼的选择性。该概念成功地显着(p <0.0001)增加了Nephrops的L-50,而没有增加或鳕鱼的丢弃物。当使用新的编码对象概念时,低于MLS(甲壳长度= 40毫米)的Nephrops的预期数量减少了约37%,但可出售捕获物的预期重量也减少了21%。因此使用新的网状结构捕鱼将在商业上仍然可行。该实验表明,可以通过改变方格面板来调整肾小球的大小选择性,但是齿轮之间的均值选择差异不明显。我们引入了一种新的分析方法,具有增强的统计能力,可检测不同码元之间选择参数的差异

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