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首页> 外文期刊>Northwest Science >Thermal exposure of juvenile fall chinook salmon migrating through a lower Snake River Reservoir
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Thermal exposure of juvenile fall chinook salmon migrating through a lower Snake River Reservoir

机译:游走于下蛇河水库的少年秋努努鲑鱼的热暴露

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Impoundment of the Snake River, Washington, has resulted in high water temperatures and late seaward migration of juvenile fall chinook salmon during summer months. To determine if juvenile fall chinook salmon are exposed to temperatures higher than the upper incipient lethal, we tagged groups of fish with temperature-sensing radio tags and tracked them in Little Goose Reservoir on the Snake River during the summers of 1998 and 1999. Spatial and temporal patterns of the reservoir's thermal environment were described using a bathythermograph. Little Goose Reservoir was generally homothermic, and temperatures selected by fish were typically not significantly different from mean water temperatures. No areas of thermal refugia existed in Little Goose Reservoir. Thermal exposure was most influenced by fish residence time in the reservoir within each year and by temperature differences between years. Current augmentation of Snake River summer flows with cold-water releases from Dworshak Dam in Idaho reduces the thermal exposure of juvenile fall chinook salmon by lowering water temperatures up to 4degreesC and may therefore increase their survival. Continued flow augmentation using water from Dworshak Reservoir may be the only mechanism to meet the temperature standard for the lower Snake River.
机译:华盛顿蛇河的蓄水,导致夏季夏季水温升高和少年秋努努鲑鱼向海底迁移。为了确定幼年秋努努鲑鱼的暴露温度是否高于上生初期致命水平,我们在1998年和1999年夏天的温度下,使用温度感应无线电标签对鱼群进行了标记,并在Snake River的Little Goose Reservoir中对其进行了追踪。使用水热计描述了储层热环境的时间模式。小鹅水库通常是等温的,鱼类选择的温度通常与平均水温没有显着差异。小鹅水库不存在热疗区。每年受热影响最大的因素是鱼类在水库中的停留时间以及年份之间的温差。目前,爱达荷州Dworshak大坝释放的冷水使Snake River夏季流量增加,通过将水温降低至4摄氏度,降低了少年秋努努克鲑鱼的热暴露,因此可能提高其存活率。使用Dworshak水库中的水持续增加流量可能是满足下蛇河温度标准的唯一机制。

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