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Modeling Arctic sea-ice algae: Physical drivers of spatial distribution and algae phenology

机译:建模北极海冰藻类:空间分布与藻类物理驱动因素

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Algae growing in sea ice represent a source of carbon for sympagic and pelagic ecosystems and contribute to the biological carbon pump. The biophysical habitat of sea ice on large scales and the physical drivers of algae phenology are key to understanding Arctic ecosystem dynamics and for predicting its response to ongoing Arctic climate change. In addition, quantifying potential feedback mechanisms between algae and physical processes is particularly important during a time of great change. These mechanisms include a shading effect due to the presence of algae and increased basal ice melt. The present study shows pan-Arctic results obtained from a new Sea Ice Model for Bottom Algae (SIMBA) coupled with a 3-D sea-ice-ocean model. The model is evaluated with data collected during a ship-based campaign to the Eastern Central Arctic in summer 2012. The algal bloom is triggered by light and shows a latitudinal dependency. Snow and ice also play a key role in ice algal growth. Simulations show that after the spring bloom, algae are nutrient limited before the end of summer and finally they leave the ice habitat during ice melt. The spatial distribution of ice algae at the end of summer agrees with available observations, and it emphasizes the importance of thicker sea-ice regions for hosting biomass. Particular attention is given to the distinction between level ice and ridged ice. Ridge-associated algae are strongly light limited, but they can thrive toward the end of summer, and represent an additional carbon source during the transition into polar night.
机译:在海冰中生长的藻类代表了一个碳的碳来源,用于调音酸和骨质生态系统,并有助于生物碳泵。大鳞片上的海冰生物物理栖息地和藻类物理驱动程序是了解北极生态系统动态的关键,以及预测其对持续北极气候变化的反应。此外,在巨大变化时量化藻类和物理过程之间的潜在反馈机制尤为重要。由于藻类存在和增加的基础冰熔体,这些机制包括阴影效果。本研究表明,从底藻(SIMBA)的新海冰模型获得了泛北极光,与三维海冰海洋模型相结合。该模型是通过在2012年夏季到东部中央北极地区的船舶运动期间收集的数据进行评估。藻类绽放被光触发并显示纬度依赖。雪和冰也在冰河生长中发挥关键作用。模拟表明,在春天绽放之后,藻类是养分有限的夏天结束前,最后他们在冰融化过程中离开冰河。夏季结束时冰藻的空间分布同意可用的观察结果,并强调较厚的海冰区举办生物质的重要性。特别注意水平冰和骑冰之间的区别。脊髓相关藻类是强烈的有限的,但它们可以朝夏天结束茁壮成长,并且在过渡到极性夜之前代表额外的碳源。

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