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首页> 外文期刊>North American Journal of Fisheries Management >Predicted Changes in Subyearling Fall Chinook Salmon Rearing andMigratory Habitat under Two Drawdown Scenarios for John Day Reservoir,Columbia River
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Predicted Changes in Subyearling Fall Chinook Salmon Rearing andMigratory Habitat under Two Drawdown Scenarios for John Day Reservoir,Columbia River

机译:哥伦比亚河约翰·戴水库的两个水位下降情景下亚秋秋季支努干鲑鱼饲养和迁徙栖息地的预测变化

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摘要

We evaluated the potential effects of two different drawdown scenarios on rearing and migration habitat of subyearling fall Chinook salmon Oncorhynchus tshawytscha in John Day Reservoir on the Columbia River. We compared habitats at normal operating pool elevation with habitats at drawdown to spillway crest elevation and drawdown to the historical natural river elevation for two flows (4,417 and 8,495 m super(3)/s). Using two-dimensional hydrodynamic modeling and a predictive habitat model, we determined the quantity and spatial distribution of rearing habitat and predicted water velocities. We predicted that the most habitat area would occur under normal pool elevation, but 93% of habitat was located in the upper third of the reservoir. Although less habitat area was predicted under drawdown to the spillway crest and the natural river, it was distributed more homogeneously throughout the study area. Habitat connectivity, patch size, and percent of suitable shoreline were greatest under drawdown to the natural river elevation. Mean cross-sectional water velocity and the variation in velocity increased with increasing level of reservoir drawdown. Water velocities under drawdown to the natural river were about twice as high as those under drawdown to spillway crest and five times higher than those under normal pool. The variability in water velocity, which may provide cues to fish migration, was highest under drawdown to the natural river and lowest under normal pool elevation. The extent to which different drawdown scenarios would be effective in John Day Reservoir depends in part on restoring normative riverine processes.
机译:我们评估了两种不同的下降情景对哥伦比亚河约翰·戴水库的亚岁秋千努克鲑鱼Oncorhynchus tshawytscha的饲养和迁移栖息地的潜在影响。我们比较了两种流量(4,417和8,495 m super(3)/ s)下正常运营池标高的栖息地与溢洪道顶标高程和历史自然河流高程的下降量。使用二维水动力模型和可预测的栖息地模型,我们确定了饲养栖息地的数量和空间分布以及预测的水流速度。我们预测,最大的栖息地面积将发生在正常的水池高度下,但是93%的栖息地位于水库的上部三分之一。尽管在溢洪道波峰和天然河流下水的情况下,预计栖息地面积会减少,但在整个研究区域内分布更均匀。在自然河流水位下降的情况下,栖息地的连通性,斑块大小和合适的海岸线百分比最大。平均剖面水速度和速度变化随储层水位下降水平的增加而增加。天然河流水位下降时的水速大约是溢洪道水位下降时的水速的两倍,比普通水池高出五倍。水流速度的变化可能为鱼类的迁徙提供线索,在向天然河水流下降的情况下最高,而在正常池水位的上升情况下最低。在约翰·戴水库(John Day Reservoir)中,不同水位下降方案的有效程度部分取决于恢复规范的河流过程。

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