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A cornucopia of oscillations on the Laptev Sea shelf

机译:振荡的振荡在laptev海架子上的聚宝盆

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摘要

The attributes of waves in the Laptev Sea that were present during 2018-2020 across a range of periods, are reported using time series constructed from long-duration, separate-year observations of sea level fluctuations made with two types of seafloor-mounted autonomous pressure recorders together with a single year of temperature measurements. In each case the data were sampled every second. Spectral analyses of the collected time series show that long waves with periods coinciding with the main diurnal harmonics of the tidal potential O_1, K_1 and semidiurnal S_2 predominate in the sea level fluctuations, recognizing that critical latitudes can also strongly influence the generation and propagation of internal tides. Substantial fluctuations were also found corresponding to the main lunar semidiurnal harmonic M_2 close to the latitude where the instruments were installed. Sea level fluctuations at a period of about 37.3 h were also apparent, identified as shelf waves using a previously-published model. Moreover, a significant decrease in sea level, up to 1.25 m, was detected on October 28, 2018, which is believed to be a negative storm surge because of the characteristic periods present in the feature. Analysis of water temperature fluctuations over the period range 30 min-24 h revealed peaks in the spectra with periods of several hours. Whilst unverifiable in the present case, similar water movements in the Laptev Sea have been attributed to internal waves arising as a result of the interaction of long surface gravity waves and shelf waves with its islands and coastal terrain, as well as baroclinic instability. Analysis of shorter period oscillations (12 s-120 min) is also carried out, which the authors ascribe to short (high-frequency) internal waves.
机译:在2018 - 2015年期间在一系列时期进行的Laptev海中的波浪的属性是使用从长期构建的时间序列,海拔的分开观察,用两种海底安装的自主压力制成的海平面波动的单独观察记录仪以及一年的温度测量。在每种情况下,每秒都采样数据。收集的时间序列的光谱分析表明,与潮汐势O_1,K_1和半峰S_2的主要谐波相一致的长波,K_1和半智能S_2占据海平面波动,认识到关键纬度也可能强烈影响内部的产生和传播潮汐。对应于靠近安装仪器的纬度的主要月球半谐波M_2对应大量波动。海拔约37.3小时的海平波动也明显,使用先前发表的模型被确定为货架波。此外,在2018年10月28日检测到海平面,高达1.25米的海平面的显着降低,这被认为是由于特征中存在的特征时期的负面风暴浪涌。在期间范围内的水温波动分析30分钟-24 h在光谱中显示出几个小时的光谱中的峰。在本案例中无法验证的同时,由于长表面重力波和货架波与其岛屿和沿海地形的相互作用,以及滨水不稳定性,由于长表面重力波和架子波的相互作用而导致的内部波是归因于内部波的归因于内部波。还进行了较短时段振荡(12S-120分钟)的分析,其中作者归因于短(高频)内波。

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  • 来源
    《Oceanographic Literature Review》 |2021年第9期|1889-1889|共1页
  • 作者单位

    Department of Mathematics & Statistics University of Otago PO Box 56 Dunedin New Zealand;

    Department of Mathematics & Statistics University of Otago PO Box 56 Dunedin New Zealand;

    Department of Mathematics & Statistics University of Otago PO Box 56 Dunedin New Zealand;

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