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首页> 外文期刊>Fisheries Research >Engineering and catching performance of five netting materials in commercial prawn-trawl systems
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Engineering and catching performance of five netting materials in commercial prawn-trawl systems

机译:商业虾拖网系统五种网状材料的工程与捕捉性能

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摘要

High-strength netting trawls have less drag due to the opportunity to use thinner twine. In prawn/shrimp trawl systems, where large otter boards spread the trawls to high spread ratios, further substantial drag reduction should Occur due to the reduced size of otter boards required. Here we conducted two comparative experiments with commercial prawn trawls made from five respective netting materials including standard polyethylene (PE), high tenacity PE and three examples of Ultra High Molecular Weight (UHMW) PE. In the first experiment, a sequence of paired comparisons of engineering performance (drag and spread) was undertaken across all trawls individually connected to one of three pair of different size otter boards; in all cases codends were left open to avoid catch size confounding the measurements. In the second experiment, catch and selectivity performances were assessed by towing the five trawls simultaneously in a five-rig system, with location in the system randomly varied. The trawl-board combination with the best engineering performance for each high-strength material produced a range of drag reduction compared to the best combination for the standard PE trawl: similar to 12% for high tenacity PE and similar to 19-21% for the three UHMW PE trawls. The high-strength netting trawls caught larger prawns compared to the standard PE trawl, possibly due to (i) increased twine flexibility allowing smaller prawns to escape, and (ii) greater flow of water through the trawl causing increased catch efficiency for larger, more mobile prawns. A strong negative result was the large amount of bycatch for most high-strength netting trawls it was concluded that this was driven in part by low fishing line tension, exacerbated by higher operating spread ratio. Some evidence was obtained that this could be mitigated by applying layback to the headline.
机译:由于使用更薄的缠绕机会,高强度网拖网具有较少的拖累。在大虾/虾拖网系统中,如果大型水电板将拖网扩散到高散射比率,则由于所需的液晶板的尺寸减小,应发生进一步大幅度的阻力。在这里,我们通过包括标准聚乙烯(PE),高韧度PE和超高分子量(UHMW)PE的三种相应的净材料制成的商业虾爪进行了两个比较实验。在第一次实验中,在所有拖网上进行了一系列成对的工程性能(拖延)比较,单独连接到三对不同尺寸的OTTER板中的一个;在所有情况下,编码都被打开,以避免捕获尺寸混淆测量。在第二种实验中,通过在五台钻机系统中同时牵引五个拖网来评估捕获和选择性表演,在系统中的位置随机变化。与每个高强度材料的最佳工程性能的拖网板组合产生了一系列阻力,与标准PE拖网的最佳组合相比:高韧度PE的12%,类似于19-21%三个uhmw pe拖网。与标准PE拖网相比,高强度网拖网捕获了较大的虾,可能是由于(i)增加了麻绳,允许较小的虾逸出,并且(ii)通过拖网更大的水流动导致较大的升高效率,更多移动虾。强烈的负面结果是大量高强度网拖网的兼容量得出结论,这是部分地通过低钓线张力驱动,通过更高的操作扩展比加剧。获得了一些证据,可以通过将边界应用于标题来减轻这一点。

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