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Linking North Slope of Alaska climate, hydrology, and fish migration

机译:连接阿拉斯加北坡的气候,水文和鱼类迁徙

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Arctic grayling (Thymallus arcticus) have a life-history strategy specifically adapted to the extreme climate of the North. These fish migrate to spawning grounds just after breakup in the spring, then migrate to feeding sites in early summer, and finally in the fall migrate back to their overwintering sites. The Kuparuk River is a perennial stream originating in the northern foothills of the Brooks Range on the North Slope of Alaska. Sections of the Kuparuk are periodically intermittent in that, during low flows in the system, these channel reaches appear dry. The flow varies between surface and subsurface in this permafrost-dominated environment, with subsurface flow being limited to the unfrozen thaw bulb around the stream. These dry reaches create a barrier to fish migration due to the lack of surface channel flow. The impacts of a warming Arctic may have implications for the partitioning of flow within the Kuparuk and consequently affect the ability of fish to move within the system at critical times. The timing and duration of these barriers are sporadic, occurring with almost equal probability throughout the summer, with fall dry spells creating the biggest impact on Arctic grayling fitness.
机译:北极河鳟(Thymallus arcticus)的生活史策略特别适合北方的极端气候。这些鱼在春季破裂后迁移到产卵场,然后在初夏迁移到觅食点,最后在秋天迁移回其越冬地点。库帕鲁克河是多年生河流,源于阿拉斯加北坡布鲁克斯山脉的北麓。库帕鲁克(Kuparuk)的各个部分是周期性断断续续的,因为在系统中流量较低时,这些通道到达的区域显得干燥。在这种以多年冻土为主的环境中,地表和地下之间的流量有所不同,地下流量仅限于围绕流的未冻融球体。由于缺乏地面通道流,这些干reaches河段阻碍了鱼类的迁移。北极变暖的影响可能会影响Kuparuk内水流的分配,从而影响鱼类在关键时刻在系统内移动的能力。这些障碍的发生时间和持续时间是零星的,整个夏季发生的几率几乎相等,秋季的干旱期对北极河豚的适应性影响最大。

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