基于接触测量的黑海北部总悬浮物浓度空间结构与水文参数关系

A. A. Latushkin, Y. Artamonov, E. A. Skripaleva, A. V. Fedirko
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摘要

本文描述了2016 - 2020年黑海北部总悬浮物水平和垂直分布特征及其与同一格网测得的水温、盐度和密度场的关系。结果表明:黑海北部总悬浮物浓度增加的主要来源是刻赤海峡的低盐度和浑浊水域;调查区东部的里奥尼河、恩古里河和其他河流的径流;还有从西北陆架流出的第聂伯河、德涅斯特河和多瑙河的淡水。在海的深水部分观察到较高的浊度,与环流和环流影响的曲流有关。总悬浮物垂直结构以上层混合层为特征,其厚度通常与上层温盐层上层混合层一致。该层总悬浮物浓度与温度、盐度呈显著负相关,与密度呈显著正相关。在表层以下,季节性温跃层和斜斜层的总悬浮物最大。高浊度层在温度梯度最大的区域比温度梯度较弱的区域薄了几乎一个数量级。局部总悬浮物最小值出现在冷中间核以下,对应于主温跃层、盐跃层和斜斜层。在这个最小值之下,与硫化氢带的上边界一致,有一个局部的总悬浮物增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Relationship of the Spatial Structure of the Total Suspended Matter Concentration and Hydrological Parameters in the Northern Black Sea According to Contact Measurements
Here we describe the features of the horizontal and vertical distribution of total suspended matter in the northern part of the Black Sea and their relationships with the water temperature, salinity, and density fields measured at the identical grid during hydro-optical surveys from 2016 to 2020. The results show that the primary sources of increased total suspended matter concen trations in the northern part of the Black Sea are low-salinity and turbid waters of the Kerch Strait; runoffs of the Rioni, Enguri, and other rivers in the east of the survey area; together with freshened waters of the Dnieper, Dniester, and Danube runoff from the northwestern shelf. Higher turbidity was observed in the deep-water part of the sea, associated with the cyclonic gyres and meanders of the Rim Current effects. The total suspended matter vertical structure features an upper mixed layer, which usually coincides in thickness with the upper thermohaline upper mixed layer. Significant negative correlations were found for this layer comparing total suspended matter concentration versus temperature and salinity, while the correlation appears positive with density values. Below, a total suspended matter subsurface maximum was observed in the seasonal thermocline and pycnocline layer. The high turbidity layer appeared almost an order of magnitude thinner in the regions of maximum temperature gradients versus the areas where the temperature gradient was weak. A local total suspended matter minimum occurred below the cold intermediate core, corresponding to the main thermocline, halocline, and pycnocline layer. Beneath this minimum, there was a local increase of total suspended matter coinciding with the upper boundary of the hydrogen sulfide zone.
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