黑海陆架-陆坡带海底动力学试验研究的初步结果

A. Zatsepin, V. Kremenetsky, O. Podymov, A. Ostrovsky
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摘要

本文介绍了黑海缺氧层通风机制与含氧水沿Ekman边界层底坡下降有关的实验研究的初步结果。为了研究这一机制,在格伦吉克湾横断面梁上80 ~ 243 m深度的陆架斜坡带底部设置了几个自动测量站。观测时间为1.5-2个月,分别于2018年初和年底完成。这些监测站在距离海底0.5-2.5米的地方记录水物理(温度、盐度、压力和流速)和水化学(溶解氧浓度)参数。所获得的数据可以根据岸流的方向和强度,用于估算斜坡上下的底层水输运时空参数。对第一次安装数据的初步分析证实,沿垂直于海岸的斜坡存在底部水转移。此外,在强烈的沿岸西北流的情况下,观察到底层水下降。这种输水方式既符合地转调整,又符合底部Ekman边界层动力学。然而,垂直输水引起的底层水密度变化与相同深度的水柱密度波动范围大致相同。这一事实对底层Ekman转移作为黑海陆坡上部水体通风机制的有效性提出了质疑(Zatsepin et al., 2007;Elkin, Zatsepin, 2017)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PRELIMINARY RESULTS OF EXPERIMENTAL STUDY OF BOTTOM LAYER DYNAMICS AT SHELF-CONTINENTAL SLOPE ZONE OF THE BLACK SEA
The preliminary results of an experimental study of a mechanism of the Black Sea anoxic layer ventilation related with the descent of oxygen-containing water down the bottom slope in Ekman boundary layer are presented. To study this mechanism, several automatic measuring stations were installed at the bottom of the shelf-continental slope zone in the depth range from 80 to 243 m, on the cross-section abeam of the Gelendzhik Bay. The observations that lasted for 1.5–2 months were fulfilled during two periods in the beginning and the end of 2018. The stations were registering hydrophysical (temperature, salinity, pressure and current velocity) and hydrochemical (dissolved oxygen concentration) parameters at a 0.5–2.5 m distance from the bottom. The acquired data are suitable for estimation of spatio-temporal parameters of water transfer in the bottom layer up and down the slope, depending on direction and intensity of alongshore current. Preliminary analysis of the first installation data confirmed the presence of bottom water transfer along the slope perpendicular to the shore. Also, in case of intense alongshore north-western current, a descent of the bottom layer water was observed. Such manner of water transfer conforms to both geostrophic adjustment and dynamics of the bottom Ekman boundary layer. However, variability of water density in the bottom layer, caused by vertical water transport, had about the same range as density fluctuations in the water column on the same depths. This fact disputes the effectiveness of Ekman transfer in the bottom layer as a water ventilation mechanism for the upper part of continental slope of the Black Sea (Zatsepin et al., 2007; Elkin, Zatsepin, 2017).
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