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Bioluminescence potential modeling during polar night in the Arctic: impact of advection versus local sources

机译:北极极性夜间的生物发光潜力模型:平流对本地来源的影响

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Bioluminescence (BL) potential observations registered high BL potential emissions during the polar night of January 2012 at the mouth of a fjord Rijpfjorden (northern Svalbard, Norway). Notably, observations of BL potential at this location were significantly higher in the upper 50 m than observed BL potential at offshore stations located on the shelf-slope areas and in the deeper water off northern Svalbard. In the present paper, we address questions as to why the values of BL potential in the fjord are higher than at offshore stations and what the role of advection is in the observed elevation of BL potential values in the fjord in comparison to offshore stations. We utilized the ensemble approach when changes in BL potential are modeled with the advection-diffusion-source (ADS) model, and the focus is on modeling and predictions of a large ensemble of averaged values of BL potential over a specific domain of interest at the fjord mouth. Results of the modeling have demonstrated increases in ensemble members with BL potential values larger than or equal to the specific threshold in comparison to corresponding ensemble members in the initial distribution. Even when we introduced mortality rates in our simulations (values from 0.1 to 0.3 day~(-1)), increases in ensemble members with higher than the threshold value were more than 3.7 times larger in comparison to ensemble members in the initial distribution. The interpretation of our results is that during the polar night, the fjord represents an area where bioluminescent organisms from offshore aggregate through advection and mixing.
机译:生物发光(BL)潜在观察在2012年1月1日的北部rijpfjorden(挪威北斯瓦尔巴特北部)的嘴夜间注册了高BL潜在​​排放。值得注意的是,在距离位于搁板上的近海站和北斯瓦尔巴特北部的深水中,对该地点的BL潜力的观察结果明显高于50米。在本文中,我们解决了为什么峡湾中BL潜力价值高于海上站点的问题以及平流的作用与海上车站相比观察到峡湾中的BL潜在价值观的提升。当使用平流扩散源(广告)模型建模的BL电位的变化时,我们利用了集合方法,重点是在特定域名的特定领域的平均值的平均值的大型值的建模和预测峡湾嘴。与初始分布中的相应的集合构件相比,建模的建模结果具有大于或等于特定阈值的BL电位值的增加。即使我们在我们的模拟中引入死亡率(0.1到0.3天〜(-1)的值),与初始分布中的集合构件相比,具有高于阈值的集合构件的组合构件的增加比较大的3.7倍。对我们的结果的解释是,在极地之夜,峡湾代表了通过平流和混合从海上骨料的生物发光生物的区域。

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