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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Modeling ice algal growth and decline in a seasonally ice-covered region of the Arctic (Resolute Passage, Canadian Archipelago)
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Modeling ice algal growth and decline in a seasonally ice-covered region of the Arctic (Resolute Passage, Canadian Archipelago)

机译:模拟北极季节性冰雪覆盖地区的冰藻生长和衰退(加拿大群岛,Resolute Passage)

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We have developed a coupled snow-ice–ice algae model to investigate the importance of different ice algal growth limitation terms, as well as different loss terms, in regulating the ice algal biomass accumulation at the bottom of landfast ice in the Canadian Archipelago. The model results are compared with data collected from May to July 2002 at a station near Resolute in Barrow Strait. Our results show that ice algae are light limited at the beginning of the bloom, then fluctuate between light and nutrient limitation, finally remaining nutrient limited toward the end of the bloom. The fortnightly tide modulates the ice algal biomass through the supply of nutrient to the ice algal layer but mainly through modulation of the bottom ice melt rate. We also demonstrate that the bottom ice melt rate regulates the maximum biomass attained in the region and that a rapid increase in ice temperature can lead to a significant decline in ice algal biomass. The eventual termination of the bloom is triggered by melting of the snow cover and results from (1) increased ice algal losses due to high bottom ice melt rate and (2) decreased ice algal growth due to nutrient limitation caused by the formation of a meltwater lens below the ice. Finally, our results show that the snow cover controls the length of the bloom, such that earlier snowmelt that is expected to accompany climate warming may lead to a reduction in ice algal production.
机译:我们已经开发了一个冰冰冰藻耦合模型,以研究不同的冰藻生长限制条件以及不同的损失条件在调节加拿大群岛陆地冰底部的冰藻生物量积累方面的重要性。将模型结果与2002年5月至2002年7月在巴罗海峡Resolute附近的某站收集的数据进行了比较。我们的结果表明,冰藻在开花开始时受光限制,然后在光照和养分限制之间波动,最后在开花结束时限制养分。每两周一次的潮汐通过向冰藻层提供营养来调节冰藻生物量,但主要是通过调节底部冰的融化速率来调节。我们还证明了底部冰的融化速度调节了该地区获得的最大生物量,并且冰温的快速升高会导致冰藻生物量的显着下降。积雪的最终终止是由于积雪的融化引起的,其原因是:(1)由于高的底部冰融化速率导致冰藻损失增加,以及(2)由于形成融水而造成的养分限制导致冰藻生长减少冰下面的镜头。最后,我们的结果表明,积雪控制着花朵的长度,因此,预计伴随气候变暖的较早融雪可能会导致冰藻产量减少。

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