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圣皮埃尔和密克隆群岛周围大的日周期底部温度振荡。

Large diurnal bottom temperature oscillations around the Saint Pierre and Miquelon archipelago.

机构信息

Ifremer, Univ. Brest, CNRS, IRD, Laboratoire d'Océanographie Physique et Spatiale (LOPS), IUEM, Brest 29280, France.

出版信息

Sci Rep. 2018 Sep 17;8(1):13882. doi: 10.1038/s41598-018-31857-w.

Abstract

Here, we report large, near-daily oscillations of near-bottom temperatures, with ranges of up to 11.5 °C at depths of 30-60 m in September 2011 around the Saint Pierre and Miquelon archipelago (south-eastern Canada). These oscillations were detected on velocity and temperature profiles from moorings in Miquelon Bay and on an array of near-bottom temperature sensors around the archipelago. The oscillations coincided with the seasonal stratification period. In addition to their remarkable range, they exhibited a near-diurnal period centred on the O1 tidal component (~26 h), contrasting with the dominant semi-diurnal sea-level periodicity in the area. They appear to be the manifestation of an internal wave, triggered by the diurnal surface tide and trapped by the bathymetric configuration of the area. We argue that the archipelago is nearly resonant for island-trapped waves at near-diurnal frequencies. Our data demonstrate that these coastal-trapped waves propagate clockwise around the archipelago in roughly two days, and thus approximate an azimuthal, mode 2 pattern. Simplified calculations show that cross-shore motions are bottom-amplified. In addition, bottom friction acts to rotate the axes of the diurnal tidal current ellipses with depth, and this combination of effects explains the large range of observed bottom temperature oscillations.

摘要

在这里,我们报告了在 2011 年 9 月圣皮埃尔和密克隆群岛(加拿大东南部)周围的深度为 30-60 米的近底层温度的大幅、近乎每日的波动,其幅度高达 11.5°C。这些波动是在莫伦湾的系泊和群岛周围的一系列近底层温度传感器的速度和温度剖面中检测到的。这些波动与季节性分层期同时发生。除了其显著的幅度外,它们还表现出一个近昼夜的周期,中心在 O1 潮汐分量(约 26 小时),与该地区占主导地位的半日潮海平面周期性形成对比。它们似乎是一种内波的表现,由日面潮汐触发,并被该地区的水深配置所困。我们认为,该群岛在近昼夜频率的岛屿陷获波中几乎是共振的。我们的数据表明,这些沿海陷获波在大约两天内顺时针环绕群岛传播,因此近似于一个方位角、模式 2的模式。简化计算表明,横向运动在底部被放大。此外,底部摩擦作用会随深度旋转日潮流椭圆的轴,这种综合效应解释了观测到的底部温度波动的大幅度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f11/6141533/c003addeeb62/41598_2018_31857_Fig1_HTML.jpg

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