...
首页> 外文期刊>Fisheries Research >A comparison of methods for calculating Catch Per Unit Effort (CPUE) of gill net catches in lakes
【24h】

A comparison of methods for calculating Catch Per Unit Effort (CPUE) of gill net catches in lakes

机译:湖泊g网捕捞量计算单位捕获量(CPUE)方法的比较

获取原文
获取原文并翻译 | 示例

摘要

Fish constitute an important component of lake ecosystems and many different methods have been used for fish assessment. Based on gill net catches in two stratified (max depth=14-22m) eutrophic Danish lakes, relative fish abundance measured as Catch Per Unit Effort (CPUE) was calculated. We used three different methods of which two followed the European standard based on benthic nets (CEN (European Committee for Standardization), 2005: EN 14757. Water quality - Sampling of fish with multi-mesh gill nets. Brussels, 27 pp.), one assuming equal volumes in all depth strata and the other using calculated volumes in the depth strata. The third method followed a modified CEN standard, adopted as a new Danish (DK) standardized method based on calculated benthic and pelagic water volumes and by including both benthic nets and, compared to the CEN standard, an increased fishing effort with pelagic nets. Fish were concentrated in the littoral/benthic part of the upper two depth strata (0-6m depth) with an up to 8 fold higher abundance than in the pelagic. Calculated CPUE is highly sensitive to the morphometry of the lakes. In lakes with extreme morphometry (unequal volumes in depth strata) it is important to use calculated water volumes for the depth strata. By including information derived from the pelagic nets, total lake CPUEs were 42-56% lower than CPUE values based on benthic nets only. We further show that the relative contribution of CPUE between habitats changes markedly with the nutrient level in 12 deep lakes. It is concluded that for deep lakes it is of key importance to include pelagic nets when comparing fish assemblages and abundances among lakes and when evaluating effects of major changes in key environmental factors, such as nutrient loading and climate.
机译:鱼是湖泊生态系统的重要组成部分,许多不同的方法已用于鱼的评估。根据两个分层(最大深度为14-22m)富营养化丹麦湖泊中的g网捕捞量,计算出相对鱼类的丰度,以每单位工作量的渔获量(CPUE)来衡量。我们使用了三种不同的方法,其中两种遵循了基于底网的欧洲标准(CEN(欧洲标准化委员会),2005:EN14757。水质-带有多目刺网的鱼的采样。布鲁塞尔,第27页),一个假设所有深度层中的体积均等,另一个假设使用深度层中的计算体积。第三种方法遵循经修改的CEN标准,该标准被用作新的丹麦(DK)标准化方法,该方法基于计算的底栖和浮游水量,并包括底栖网和与CEN标准相比,使用浮游网增加了捕捞工作。鱼类集中在上部两个深度层(0-6m深度)的沿海/底栖部分,其丰度比中上层高出8倍。计算得出的CPUE对湖泊的形态高度敏感。在具有极端形态(深度地层体积不相等)的湖泊中,重要的是要使用计算出的水量作为深度地层。通过包括来自远洋网的信息,总湖泊CPUE比仅基于底栖网的CPUE值低42-56%。我们进一步表明,在12个深湖中,生境之间CPUE的相对贡献随着养分水平的变化而显着变化。结论是,对于深湖而言,在比较湖泊之间的鱼类组成和丰度以及评估关键环境因素(如养分含量和气候)的主要变化的影响时,包括远洋网至关重要。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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