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首页> 外文期刊>Marine Technology Society journal >A Coupled Asymmetrical Multiple Opening Closing Net with Environmental Sampling System
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A Coupled Asymmetrical Multiple Opening Closing Net with Environmental Sampling System

机译:带有环境采样系统的非对称多重开闭网

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Recruitment levels of fishes are potentially related to the abundance of larval fishes and their food source, A system that could allow for the concurrent investigation of fine-scale distribution of fish larvae and their potential prey could add significantly to the understanding of the early life history of marine fishes. A coupled Multiple Opening Closing Net and Environmental Sensing System (MOCNESS) that combines two sub-systems (1 m~2 and 4 m~2 net sets) working in synchronization was designed to answer these questions. The mesh size was different on each set of nets allowing the collection of a broad size range of organisms while optimizing the catch of larger fish larvae and eliminating unnecessary large samples of zoopfankton. Moreover, the system eliminated the need to deploy separate MOCNESS using different mesh sizes, thus reducing ship time costs, and avoiding any aliasing associated with trying to sample the same water mass with separate nets fished sequentially. The system has been used at sea under varying weather conditions onboard the R/V F. G. Walton Smith and sampled adequately.
机译:鱼的招聘水平可能与幼鱼的丰富及其食物来源有关。一个可以同时调查鱼幼体及其潜在猎物的精细分布的系统可能会大大增加对早期生活史的理解海洋鱼类。设计了一个结合了两个子系统(1 m〜2和4 m〜2网组)的同步工作的多重开闭网和环境传感系统(MOCNESS)来回答这些问题。每套网的网眼大小都不同,从而可以收集各种尺寸的生物,同时优化捕捞较大鱼幼体的能力,并消除不必要的大型浮游动物样本。此外,该系统消除了使用不同网格尺寸部署单独的MOCNESS的需要,从而降低了船期成本,并避免了与尝试依次采样的分离网对相同水量进行采样相关的混叠现象。该系统已在R / V F. G. Walton Smith船上在不同天气条件下的海上使用,并进行了充分采样。

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