Variability of saltwater flow in the Hoburg Channel, Baltic Sea: in situ measurements vs NEMO modelling

V. Paka, V. Zhurbas, M. Golenko, A. Korzh, A. Kondrashov
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Abstract

A half-year long time series of the bottom layer velocity measured in situ in the Hoburg Channel displayed seven-day oscillations of the saltwater flow. The flow was characterized by alterations of surges with the increase of northward velocity to approximately 0.2–0.3 m/s and blockages when the northward velocity vanishes or becomes small negative. The measured time series of the northward velocity component was surprisingly highly correlated with the simulation by NEMO reanalysis at the correlation coefficient of 0.82 and the 95 % confidence limits of 0.76–0.86. The seven-day oscillations were accompanied by almost synchronous oscillations of the southeast component of the wind vector. It can be considered convincing evidence that the seven-day oscillations in the saltwater flow were caused by wind forcing.
波罗的海霍堡海峡咸水流量的可变性:现场测量与 NEMO 模型对比
在霍伯格海峡现场测量的底层速度的半年时间序列显示,咸水流出现了七天的振荡。海水流动的特点是:当向北速度增加到大约 0.2-0.3 米/秒时,海水会涌动;当向北速度消失或变成小负值时,海水会堵塞。测量到的向北速度分量时间序列与 NEMO 再分析的模拟结果惊人地高度相关,相关系数为 0.82,95%置信区间为 0.76-0.86。在七天振荡的同时,风矢量的东南分量也几乎同步振荡。可以认为,海水气流的七天振荡是由风力强迫引起的,这是一个令人信服的证据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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