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A Markov chain analysis of fish movements to determine entrainment zones

机译:鱼类运动的马尔可夫链分析以确定夹带区域

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Fish can become entrained at water withdrawal locations such as fish bypasses, hydroelectric turbines, and power plant cooling water intakes. Accordingly, the size of a fish entrainment zone (FEZ) is often of interest to fisheries managers and facility operators because of the need to protect fish from injury or mortality. This study developed a new technique to map the FEZ, defined here as the region immediately upstream of a portal where the probability of fish movement toward the portal is greater than 90%. To map the FEZ, we applied a Markov chain analysis to fish movement data collected with an active fish tracking sonar. This sonar device locked onto and followed fish targets, recording their positions through a set of volumetric cells comprising the sampled volume. The probability of a fish moving from one cell to another was calculated from fish position data. These probabilities were used to populate a Markov transition matrix. In 2000, we developed and applied the technique using data on salmon smolts migrating near the ice/trash sluiceway at The Dalles Dam on the Columbia River. The FEZ of the sluiceway entrance: as determined with this procedure was approximately 5 m across and extended 6-8 m out from the face of the dam in the surface layer 2-3 m deep. In conclusion, using a Markov chain analysis of fish movement data, we were able to describe and quantify the FEZ of the sluiceway at The Dalles dam. This Markov chain analysis could be used in a comparative before/after study to look at changes in FEZ caused by engineered structures. The technique is generally applicable to bio-engineering efforts aimed at protecting fish populations affected by water withdrawals.
机译:鱼类可能会在取水场所(例如鱼旁路,水力涡轮机和电厂冷却水取水口)被夹带。因此,由于需要保护鱼类免受伤害或死亡,渔业管理人员和设施经营者通常对鱼的夹带区(FEZ)的大小感兴趣。这项研究开发了一种绘制FEZ的新技术,此处将FEZ定义为紧邻门户的上游区域,其中鱼类向该门户运动的可能性大于90%。为了绘制FEZ的地图,我们对通过主动鱼跟踪声纳收集的鱼运动数据应用了马尔可夫链分析。该声纳设备锁定并跟随在鱼目标上,并通过一组包含采样体积的容积细胞记录其位置。根据鱼类位置数据计算出鱼类从一个细胞移动到另一个细胞的可能性。这些概率用于填充马尔可夫转移矩阵。 2000年,我们利用哥伦比亚河Dalles大坝上冰/垃圾闸口附近鲑鱼迁徙的数据开发并应用了该技术。闸道入口的FEZ:按照此步骤确定,跨过大约5 m,并从2-3 m深的表层中的坝面伸出6-8 m。总之,使用鱼运动数据的马尔可夫链分析,我们能够描述和量化达勒斯大坝水闸的FEZ。该马尔可夫链分析可用于研究前后的比较中,以查看由工程结构引起的FEZ的变化。该技术通常适用于旨在保护受取水影响的鱼类种群的生物工程工作。

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