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被困的潮流在北极大陆坡产生自由传播的内波。

Trapped tidal currents generate freely propagating internal waves at the Arctic continental slope.

作者信息

Baumann Till M, Fer Ilker

机构信息

Geophysical Institute, University of Bergen and Bjerknes Centre for Climate Research, Bergen, Norway.

Institute for Marine Research, Bergen, Norway.

出版信息

Sci Rep. 2023 Sep 8;13(1):14816. doi: 10.1038/s41598-023-41870-3.

Abstract

Energetic tidal currents in the Arctic play an important role in local mixing processes, but they are primarily confined to the shelves and continental slopes due to topographic trapping north of their critical latitude. Recent studies employing idealized models have suggested that the emergence of higher harmonic tidal waves along these slopes could serve as a conduit for tidal energy transmission into the Arctic Basin. Here we provide observational support from an analysis of yearlong observations from three densely-instrumented oceanographic moorings spanning 30 km across the continental slope north of Svalbard ([Formula: see text]81.3[Formula: see text]N). Full-depth current records show strong barotropic diurnal tidal currents, dominated by the K[Formula: see text] constituent. These sub-inertial currents vary sub-seasonally and are strongest at the 700-m isobath due to the topographic trapping. Coinciding with the diurnal tide peak in summer 2019, we observe strong baroclinic semidiurnal currents exceeding 10 cm s[Formula: see text] between 500 m and 1000 m depth about 10 km further offshore at the outer mooring. In this semidiurnal band, we identify super-inertial K[Formula: see text] waves, and present evidence that their frequency, timing, polarization, propagation direction and depths are consistent with the generation as higher harmonics of the topographically trapped K[Formula: see text] tide at the continental slope.

摘要

北极活跃的潮流在局部混合过程中发挥着重要作用,但由于其临界纬度以北的地形限制,它们主要局限于大陆架和大陆坡。最近使用理想化模型的研究表明,沿着这些斜坡出现的高次谐波潮汐波可以作为潮汐能量传输到北极盆地的通道。在这里,我们通过对斯瓦尔巴德以北(北纬81.3°)横跨30公里大陆坡的三个密集仪器海洋系泊长达一年的观测分析提供了观测支持。全深度海流记录显示出强烈的正压日潮流,以K1分量为主。这些亚惯性海流随季节变化,由于地形限制,在700米等深线处最强。与2019年夏季的日潮峰值一致,我们在外层系泊处离岸约10公里处500米至1000米深度之间观测到超过10厘米/秒的强烈斜压半日潮流。在这个半日频带中,我们识别出超惯性K2波,并提供证据表明它们的频率、时间、极化、传播方向和深度与大陆坡上地形捕获的K1潮的高次谐波产生一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb1b/10491755/03e86085b6e2/41598_2023_41870_Fig1_HTML.jpg

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